Skip to main content

Plasmaphysik

  • Conference paper
  • First Online:

Part of the book series: Ergebnisse der Exakten Naturwissenschaften ((STMP,volume 34))

This is a preview of subscription content, log in via an institution.

Preview

Unable to display preview. Download preview PDF.

Unable to display preview. Download preview PDF.

Literatur

  1. Aitken, K. L., J. N. Burcham andP. Reynolds: Experiments with linear pinch and inverse pinch systems. Proceedings of the fourth international conference on ionization phenomena in Gases, held in Uppsala 1959, Vol. II, p. 896. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  2. Alfvén, H.: Cosmical electrodynamics. Oxford: Clarendon Press 1950.

    Google Scholar 

  3. Alidieres, M., R. Aymar, C. Etievant, P. Jourdan andA. Samain: Electrical discharge in a magnetic mirror configuration. Proceedings of the fourth international conference on ionization phenomena in Gases, held in Uppsala 1959, Vol. II, 1042. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  4. Allen, J. E., andS. E. Segrè: Experiments on the orthogonal pinch effect. Proceedings of the fourth international conference on ionization phenomena in Gases, held in Uppsala 1959, Vol. II, 1073. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  5. Allen, N. L., andB. S. Liley: The measurement and interpretation of the magnetic fields in sceptre III A. Proceedings of the fourth international conference on ionization phenomena in Gases, held in Uppsala 1959, Vol. 2, 937. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  6. Allen, T. K., R. V. Pyle andJ. M. Wilcox: Experimental investigations of waves in plasma. UCRL-Report 8682, p. 58. University of California 1959.

    Google Scholar 

  7. Allibone, T. E., D. R. Chick, G. P. Thomson andA. A. Ware: Review of controlled thermonuclear research at A. E. J. Research laboratory. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 169. United Nations, Geneva 1958.

    Google Scholar 

  8. Alpher, R. A., andD. R. White: Optical refractivity of high-temperature gases. I. Effects resulting from dissociation of diatomic gases. Phys. Fluids2, 153 (1959). II. Effects resulting from ionization of monatomic gases. Phys. Fluids2, 162 (1959).

    Google Scholar 

  9. Alvarez, L. W., H. Bradner, F. S. Crawford, J. A. Crawford, P. Falk-Vairant, M. L. Good, J. D. Gow, A. H. Rosenfeld, F. Solmitz, M. L. Stevenson, H. K. Ticho andR. D. Tripp: Catalysis of nuclear reactions by μ-mesons. Physic. Rev.105, 1127 (1957).

    Google Scholar 

  10. Anderson, O. A., W. R. Baker, A. Bratenahl, H. P. Furth, J. Ise jr., W. B. Kunkel andJ. M. Stone: Study and use of rotating plasma. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 155. United Nations. Geneva 1958.

    Google Scholar 

  11. Anderson, O. A., W. R. Baker, A. Bratenanl, H. P. Furth andW. B. Kunkel: Hydromagnetic capacitor. J. Appl. Phys.30, 188 (1959).

    Google Scholar 

  12. —— ——S. A. Colgate, J. Ise jr. andR. V. Pyle: Neutron production in linear deuterium pinches. Terzo congresso internazionale sui fenomeni d' ionizzazione nei gas, tenuto a Venezia 1957, p. 62. Società italiana di fisica, Milano 1957 und: Phys. Rev.110, 1375 (1958).

    Google Scholar 

  13. —— ——J. Ise jr., W. B. Kunkel, R. V. Pyle andJ. M. Stone: Sheet pinch devices. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 150. United Nations, Geneva 1958.

    Google Scholar 

  14. -- -- -- -- -- The triax pinch device. UCRL-report 8153, University of California 1958.

    Google Scholar 

  15. Anderson, T.: Modell 200, reflecting-optics, sweep camera. Paper presented at the 5th international congress on high-speed photography, held in Washington 1960.

    Google Scholar 

  16. Andrianow, A. M., O. A. Bazilevskaia, S. H. Braginskii, B. G. Brezhnev, S. Khvaschevski, V. A. Khrabrov, N. G. Kovalski, N. V. Filippov, T. I. Filippova, V. E. Palchikov, I. M. Podgorny, Yu. G. Prokhorov andM. M. Sulkovskaya: High-current pulse discharges. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 31, 348. United Nations. Geneva 1958.

    Google Scholar 

  17. Andrianov, A. M., O. A. Bazilevskaya, S. Yu. Luk'yanov, S. M. Osovets, Yu. F. Petrov, I. M. Podgorny andN. A. Yavlinskii: Investigations of the heating of a hydrogen plasma in small toroidal systems. Plasma physics and the problems of controlled thermonuclear reactions, edited byM. A. Leontovich, Vol. I, 48. Oxford, London, New York, Paris: Pergamon Press 1961.

    Google Scholar 

  18. Andruckina, E. D., S. E. Grebenshikov, M. S. Rabinovich, M. D. Reiser, A. Ja. Safronov andJ. S. Shpigel: Some peculiarities of induction gas discharges. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. II, 1050. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  19. Anisimov, A. I., V. E. Golant, B. P. Konstantinov andN. J. Vinogradov: A method for studying the space distribution of electrons in a plasma. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. II, 729. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  20. Artsimovich, L. A., A. M. Andrianov, O. A. Bazilevskaya, Y. G. Prokhorov andN. V. Filippov: An investigation of high-current pulsed discharges. Atomnaya energ.1, Nr. 3, 76 (1956).

    Google Scholar 

  21. —— ——E. I. Dobrokhotov, S. Y. Lukyanov, I. M. Podgorny, V. I. Sinitsyn andN. V. Filippov: High-energy radiation from pulsed discharges. Soviet J. Atomic Energy1, 375 (1956).

    Google Scholar 

  22. Ascoli-Bartoli, U., andF. Rasetti: Measurements of the refractive index of a plasma in the optical region. Proceedings of the forth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. II, 839. Amsterdam: North-Holland Publishing Com. 1960.

    Google Scholar 

  23. Ashby, D. E. T. F., andJ. W. M. Paul: A toroidal fast pinch experiment. Proceedings of the fourth international congerence on ionization phenomena in gases, held in Uppsala 1959, Vol. 2, 961. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  24. Aymar, R., C. Etievant, P. Hubert, A. Samain, B. Taquet andA. Torossian: Experimental studies of the pinch phenomenon. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 92. United Nations, Geneva 1958.

    Google Scholar 

  25. Baker, W. R., A. Bratenahl, A. W. de Silva andW. B. Kunkel: Viscous effects in highly ionized rotating plasmas. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. II, 1171. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  26. Barnett, C. F.: The dissociation of diatomic hydrogen ions. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958; Vol. 32, 398. United Nations, Geneva 1958.

    Google Scholar 

  27. ——P. R. Bell, J. S. Luce, E. D. Shipley andA. Simon: The oak ridge thermonuclear experiment. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 31, 298. United Nations, Geneva 1958.

    Google Scholar 

  28. Bartels, H., u.B. Eiselt: Über ein einfaches Verfahren zur kinematographischen Aufnahme schnell verlaufender Vorgänge. Optik6, 56 (1950).

    Google Scholar 

  29. Bayet, M., J. L. Delcroix etJ. F. Denisse: Théorie cinétique des plasmas homogènes faiblement ionisés I. J. phys. radium15, 795 (1954).

    Google Scholar 

  30. —— —— ——: Théorie cinétique des plasmas homogènes faiblement ionisés. II. J. phys. radium16, 274 (1955).

    Google Scholar 

  31. Beard, D. B.: Relativistic calculation for cyclotron radiation from hot plasma. Phys. Fluids3, 324 (1960).

    Google Scholar 

  32. Bearden, A. J., F. L. Ribe, G. A. Sawyer andT. F. Stratton: X-ray continua and line spectra from highly stripped atoms in a magnetically compressed plasma. Phys. Rev. Letters6, 257 (1961).

    Google Scholar 

  33. Bennett, W. H.: Magnetically self-focusing streams. Phys. Rev.45, 890 (1934).

    Google Scholar 

  34. Berger, J. M., I. B. Bernstein, E. A. Frieman andR. M. Kulsrud: On the ionization and ohmic heating of a helium plasma. Phys. Fluids1, 297 (1958) und: Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 197. United Nations, Geneva 1958.

    Google Scholar 

  35. ——,W. A. Newcomb, I. M. Dawson, E. A. Frieman, R. M. Kulsrud andA. Lenard: Heating of a confined plasma by oscillating electromagnetic fields. Phys. Fluids1, 301 (1958) und: Proceedings of the second united nations international conference on the peaceful used of atomic energy, held in Geneva 1958, Vol. 31, 112. United Nations, Geneva 1958.

    Google Scholar 

  36. Berkowitz, J., K. O. Friedrichs, H. Goertzel, H. Grad, J. Killeen andE. Rubin: Cusped geometries. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 31, 171. United Nations, Geneva 1958.

    Google Scholar 

  37. ——,H. Grad andH. Rubin: Magnetohydrodynamic stability. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 31, 177. United Nations, Geneva 1958.

    Google Scholar 

  38. Bernstein, J. B., E. A. Frieman, M. D. Kruskal andR. M. Kulsrud: An energy principle for hydromagnetic stability problems. Proc. Roy. Soc. A244, 17 (1958).

    Google Scholar 

  39. —— andS. K. Trehan: Plasma oscillations I. Nuclear Fusion1, 1 (1960).

    Google Scholar 

  40. Bernstein, W., F. F. Chen, M. A. Heald andA. Z. Kranz: Runaway-electrons and cooperative phenomena in B-1 stellarator discharges. Phys. Fluids1, 430 (1958) und: Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 210. United Nations, Geneva 1958.

    Google Scholar 

  41. A. Z. Kranz andF. Tenney: Oscillations in the B-1 stellarator. Phys. Fluids2, 713 (1960).

    Google Scholar 

  42. —— —— ——: Kinematics of ohmic heated plasmas in the B-1 stellarator. Phys. Fluids3, 1019 (1960).

    Google Scholar 

  43. Bethe, H., andW. Heitler: On the stopping of fast particles and on the creation of positive electrons. Proc. Roy. Soc. (London) A,146, 83 (1934).

    Google Scholar 

  44. Bezbatchenko, A. L., I. N. Golovin, D. P. Ivanov, V. D. Kirillov andN. A. Yovlinski: Investigation of the gas discharge of a very strong current in a longitudinal magnetic field. J. Nuclear Energy5, 71 (1957).

    Google Scholar 

  45. Bickerton, R. J.: High-current discharges in axial magnetic fields. Terzo congresso internazionale sui fenomeni d'ionizzazione nei gas, tenuto a Venezia 1957, p. 101. Società italiana di fisica, Milano 1957.

    Google Scholar 

  46. ——: The amplification of a magnetic field by a high current discharge. Proc. Phys. Soc. (London) B71, 618 (1958).

    Google Scholar 

  47. Biermann, L.: Remarks on the stellarator scheme. Nuclear Instr. & Methods4, 279 (1959).

    Google Scholar 

  48. ——K. Hain, K. Joergens u.R. Lüst: Axialsymmetrische Lösungen der magnetohydrostatischen Gleichung mit Oberflächenströmen. Z. Naturforsch.12a, 826 (1957).

    Google Scholar 

  49. —— —— andR. Lüst: Axysymmetric configurations in magnetohydrodynamic equilibrium. Terzo congresso internazionale sui fenomeni d'ionizzazione nei gas, tenuto a Venezia 1957, p. 110. Società italiana di fisica, Milano 1957.

    Google Scholar 

  50. Bineau, M., T. Consoli, P. Hubert, F. Prévot, P. Ricateau etA. Samain: Les machines à miroirs magnétiques. Nuclear Inst. & Methods4, 282 (1959).

    Google Scholar 

  51. —— ——Ch. Maisonnier, F. Prévot etP. Ricateau: Les machines à miroirs magnétiques. Nuclear Instr. & Methods4, 290 (1959).

    Google Scholar 

  52. Birdsall, D. H., S. A. Colgate andH. P. Furth: The hard-core pinch I. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. II, p. 888. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  53. Birdsall, D. H., S. A. Olgate andH. P. Furth: The hore pinch II. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. II, 892. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  54. Bishop, A. S.: Project Sherwood, the U.S. program in controlled fusion. Reading (Mass.) Addison-Wesley Publishing Comp. Inc. 1958.

    Google Scholar 

  55. Bodin, H. A. B., T. S. Green, G. B. F. Niblett andN. J. Peacock: An experimental investigation of the rapid compression of a plasma using azimuthal currents (Thetatron). Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. II, 1061. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  56. —— —— —— —— The formation and implosion of a cylindrical current sheath in thetatron. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. II, 1065. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  57. ——A. A. Newton andN. J. Peacock: Rapid compression heating of a plasma in the linear Z-pinch. Nuclear Fusion1, 54 (1960).

    Google Scholar 

  58. —— —— —— The damping of Rayleigh-Taylor instabilities in a thetatron discharge. Nuclear Fusion1, 139 (1961).

    Google Scholar 

  59. Bostick, W. H.: Experimental study of ionized matter projected across a magnetic field. Phys. Rev.104, 292 (1956).

    Google Scholar 

  60. ——: Experimental study of plasmoids. Phys. Rev.106, 404 (1957).

    Google Scholar 

  61. ——: Propulsion of plasma by magnetic means. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 427. United Nations, Geneva 1958.

    Google Scholar 

  62. ——, andM. A. Levine: Experimental demonstration in the laboratory of the existence of magneto-hydrodynamic waves in ionized helium. Phys. Rev.87, 671 (1952).

    Google Scholar 

  63. Boyd, G. D.: Experiments on the interaction of a modulated electron beam with a plasma. Techn. Rep. Nr.11. Calif. Institut of Techn. NP-7897.

    Google Scholar 

  64. ——L. M. Field andR. W. Gould: Excitations of plasma oscillations and growing plasma waves. Phys. Rev.109, 1393 (1958).

    Google Scholar 

  65. Boyer, K., W. C. Elmore, E. M. Little, W. E. Quinn andJ. L. Tuck: Studies of plasma heated in a fast-rising axial magnetic field (Scylla). Phys. Rev.119, 831 (1960).

    Google Scholar 

  66. ——J. E. Hammel, C. L. Longmire, D. Nagle, F. L. Ribe andW. B. Riesenfeld: Theoretical and experimental discussion of ixion, a possible thermonuclear device. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 31, 319. United Nations, Geneva 1958.

    Google Scholar 

  67. ——E. M. Little, W. E. Quinn, G. A. Sawyer andT. F. Stratton. Soft X-rays from a magnetically compressed plasma in scylla. Phys. Rev. Letter2, 279 (1959).

    Google Scholar 

  68. Bratenahl, A., W. R. Baker, A. W. de Silva, W. B. Kunkel andK. Halbach: The homopolar device. UCRL-report 8682, p. 46. University of California 1959.

    Google Scholar 

  69. Breton, C., andL. Herman: Spectroscopic studies on T.A. 2000. Proceedings of the fourth international conference on ionization phenomena in gases. held in Uppsala 1959, Vol. II, 972. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  70. Brouer, F. L., andD. F. Hansen: F/2,9 streak camera. J. Opt. Soc. Am.49, 421 (1959).

    Google Scholar 

  71. Brown, S. C.: High-frequency waves in ionized gases. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. II, 691. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  72. Buneman, O.: Instability, turbulence, and conductivity in current-carrying plasma. Phys. Rev. Letters1, 8 (1958).

    Google Scholar 

  73. Burkhardt, L. C., andR. H. Lovberg: Field configurations and stability in a linear discharge. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 29. United Nations, Geneva 1958.

    Google Scholar 

  74. —— —— andI. A. Phillips: Magnetic measurement of plasma confinement in a partially stabilized linear pinch. Nature181, 224 (1958).

    Google Scholar 

  75. Burnett, C. R., D. J. Grove, R. W. Palladino, T. H. Stix andK. E. Wakefield: The divertor, a device for reducing the impurity level in a stellarator. The physics of fluids1, 438 (1958) und: Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 225. United Nations, Geneva 1958.

    Google Scholar 

  76. Butslov, M. M., E. K. Zavoisky, A. G. Plahov, G. E. Smolkin u.S. D. Panchenko: Electron-optical method for studying shortduration phenomena. Bericht über den IV. internationalen Kongreß für Kurzzeitphotographie und Hochfrequenzkinematographie, Köln 1958, p. 230. Darmstadt: Verlag Dr. O. Helwich 1959.

    Google Scholar 

  77. Butt, E. P., R. Carruthers, J. T. D. Mitchell, R. S. Pease, P. C. Thone-Mann, M. A. Bird, J. Blears andE. R. Hartill: The design and performance of ZETA. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 42. United Nations, Geneva 1958.

    Google Scholar 

  78. Chandrasekhar, S.: Principles of stellar dynamics. Chicago: Univ. Press 1942

    Google Scholar 

  79. —— The coefficient of dynamical friction. Astrophys. J.97, 255 (1943).

    Google Scholar 

  80. ——A. N. Kaufman andK. M. Watson: The stability of the pinch. Proc. Roy. soc. A245, 435 (1958).

    Google Scholar 

  81. Chapman, S., andT. G. Cowling: The mathematical theory of non-uniform gases. Cambridge: University Press 1958.

    Google Scholar 

  82. Chodura, R.: Wird veröffentlicht.

    Google Scholar 

  83. Christofilos, N. C.: Astron thermonuclear reactor. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 279. United Nations, Geneva 1958.

    Google Scholar 

  84. -- Description and implications of the New injection system. UCRL-report 8887, p. 40. University of California 1959.

    Google Scholar 

  85. --,K. W. Ehlers andF. Voelker: The astron pulsed electron gun. UCRL-report 8151. University of California 1958.

    Google Scholar 

  86. Clauser, F. H.: Symposium of plasma dynamics. Addison-Wesley. Reading/Massachusetts, London: Publishing Company, Inc. 1960.

    Google Scholar 

  87. Coensgen, F. H., W. F. Cummins, W. E. Nexsen jr.. andA. E. Sherman: Evidence of containment of a 3-keV deuterium plasma. Phys. Rev. Letters5, 459 (1960).

    Google Scholar 

  88. -- --, andA. E. Sherman: Toy top experiment. Papers presented at the controlled thermonuclear conference, held at Washington, D. C., 1958, TID-7558, p. 211 (1958).

    Google Scholar 

  89. ——,F. C. Ford andR. E. Ellis: Pyrotron plasma-heating experiments. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 266. United Nations, Geneva 1958.

    Google Scholar 

  90. Cohen, R. S., L. Spitzer andP. McR. Routly: The electrical conductivity of an ionized gas. Phys. Rev.80. 230 (1950).

    Google Scholar 

  91. Colgate, S. A.: A summary of the Berkeley and Livermore pinch. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 123. United Nations, Geneva 1958.

    Google Scholar 

  92. ——J. P. Ferguson andH. P. Furth: A toroidal stabilized pinch. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 129. United Nations, Geneva 1958.

    Google Scholar 

  93. —— —— —— andR. E. Wright: A partly stabilized dynamic pinch. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 140. United Nations, Geneva 1958.

    Google Scholar 

  94. --, andH. P. Furth: Stabilization of pinch discharges. UCRL-report 5862, University of California 1960.

    Google Scholar 

  95. Consoli, T., etM. Dagai: Polarisation rotatoire magnétique dans les plasmas. Compt. rend.250, 1010 (1960).

    Google Scholar 

  96. —— —— Application à la mesure de la densité électronique. Compt. rend.250, 1223 (1960).

    Google Scholar 

  97. ——,P. Hubert, R. Le Quinio etD. Véron: Les sources d'ions et de plasma. Nuclear Instr. & Methods4, 376 (1959).

    Google Scholar 

  98. Coor, T.: Plasma diffusion in stellarators. J. Nuclear Energy, Part C2, 81 (1961).

    Google Scholar 

  99. ——S. P. Cunningham, R. A. Ellis, M. A. Heald andA. Z. Kranz: Experiments on the ohmic heating and confinement of plasma in a stellarator. Phys. Fluids1, 411 (1958) und: Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 201. United Nations, Geneva 1958.

    Google Scholar 

  100. Courant, R., andK. O. Friedrichs: Supersonic flow and shock waves. New York: Interscience Publishers Inc. 1948.

    Google Scholar 

  101. Cowling, T. G.: Magnetohydrodynamics. New York: Interscience Publishers, Inc. 1957.

    Google Scholar 

  102. Damm, C. C., andF. S. Eby: Pyrotron high-energy experiments. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 273. United nations, Geneva 1958.

    Google Scholar 

  103. Dattner, A., B. Lehnert andS. Lundquist: Liquid Conductor model of instabilities in a pinched discharge. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 31, 325. United Nations, Geneva 1958.

    Google Scholar 

  104. Davis, L., R. Lüst andA. Schlüter: The structure of hydromagnetic shock waves. Z. Naturforsch.13a, 916 (1958).

    Google Scholar 

  105. De Hoffmann, F., andE. Teller: Magneto-hydrodynamic shocks. Phys. Rev.80, 692 (1950).

    Google Scholar 

  106. Delcroix, J.-L.: Introduction à la théorie des gaz ionisés. Paris: Dunod 1959.

    Google Scholar 

  107. —— Théorie microscopique des gaz ionisés. La théorie des gaz neutres et ionisés, parC. De Witt etJ. F. Detoeuf, p. 185. Paris: Hermann; New York: Wiley & Sons, Inc. 1960.

    Google Scholar 

  108. Dellis, A. N.: Microwave measurements in low pressure discharges. Terzo congresso internazionale sui fenomeni d'ionizzazione nei gas, tenuto a Venezia 1957, p. 228. Società italiana di fisica, Milano 1957.

    Google Scholar 

  109. Denisse, J.-F.: Etude des ondes électromagnétiques dans les plasmas à partir de l'équation deBoltzmann. La théorie des gaz neutres et ionisés, parC. De Witt etJ. F. Detoeuf, p. 355. Paris: Hermann; New York: J. Wiley & Sons, Inc. 1960.

    Google Scholar 

  110. ——, etJ. L. Delcroix: Ondes électromagnetiques dans les plasmas. Paris: Dunod 1960.

    Google Scholar 

  111. De Witt, C., etJ. F. Detoeuf: La théorie des gaz neutres et ionisés. Paris: Hermann; New York: J. Wiley and Sons, Inc. 1960.

    Google Scholar 

  112. Dickerman, P. J.: The determination of the equilibrium temperature of a plasma. Conference on extremely high temperatures, edited byH. Fischer andL. C. Mansur, p. 77. New York: J. Wiley & Sons, Inc. 1958.

    Google Scholar 

  113. Dippel, K. H., andW. Teckenburg: Magnetic field probes with high frequency response. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. I, 533. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  114. Dolgov-Saveliev, G. G. D. P. Ivanov, V. S. Mukhovatov, K. A. Razumova, V. S. Strelkov, M. N. Shepelyev andN. A. Yavlinsky: Investigations of the stability and heating of plasmas in toroidal chambers. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 82. United Nations, Geneva 1958.

    Google Scholar 

  115. Dreicer, H.:Runaway electrons in a fully ionized gas. Terzo congresso internazionale sui fenomeni d'ionizzazione nei gas, tenuto a Venezia 1957, p. 249. Società italiana di fisica, Milano 1957.

    Google Scholar 

  116. —— Theory of runaway electrons. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 31, 57. United Nations, Geneva 1958.

    Google Scholar 

  117. —— Electron and ion runaway in a fully ionized gas I. Phys. Rev.115, 238 (1959).

    Google Scholar 

  118. Drummond, J. E.: Basic microwave properties of hot magneto-plasmas. Phys. Rev.110, 293 (1958).

    Google Scholar 

  119. —— Microwave propagation in hot Magnetoplasmas Phys. Rev.112, 1460 (1958).

    Google Scholar 

  120. —— Plasma physics. New York, Toronto, London: Mc Graw-Hill Book Company, Inc. 1961.

    Google Scholar 

  121. Drummond, W. E., andM. N. Rosenbluth: Cyclotron radiation from a hot plasma. Phys. Fluids3, 45 (1960).

    Google Scholar 

  122. Dudgeon, E. H.: Streak camera development by the national research council. Paper presented at the 5th international congress on high-speed photography, held in Washington 1960.

    Google Scholar 

  123. Dungey, J. W.: A family of solutions of the magneto-hydrostatic problem in a conducting atmosphere in a gravitational field. Physik. Ber.33, 1334 (1954).

    Google Scholar 

  124. Dyson, I., R. F. Hemmings andR. T. Waters: An f/1 streak camera for use in the ultraviolet. Paper presented at the 5th international congress on high-speed photography, held in Washington 1960.

    Google Scholar 

  125. Eby, F. S., andC. C. Damm: The Felix experiment. Papers presented at the controlled thermonuclear conference, held at Washington, D. C. 1958, TID-7558, p. 168, (1958).

    Google Scholar 

  126. Ecker, G., u.Weizel: Zustandssumme und effektive Ionisierungsspannung im Innern des Plasmas. Z. Naturforsch.12a, 859 (1957).

    Google Scholar 

  127. Eidman, V. I.: The radiation from an electron moving in a magnetoactive plasma. Soviet physics JETP7, 91 (1958).

    Google Scholar 

  128. Ellis, R. A., L. P. Goldberg andJ. G. Gorman: Loss of charged particles in a stellarator during ohmic heating. The physics of fluids3, 468 (1960) und: Proceedings of the fourth international conference on ionzation phenomena in gases, held in Uppsala 1959, Vol. II, 1129. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  129. —— —— ——: Particle loss in a stellarator during ohmic heating. 6. A possible electrostatic instability. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. II, 1133. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  130. —— —— ——: Possibility of an electrostatic instability in a stellarator. Phys. Fluids3, 797 (1960).

    Google Scholar 

  131. Ellis, R. E., andN. L. Parker: Electron energy distribution. Papers presented at the controlled thermonuclear conference, held at Washington, D.C. 1958, TID-7558, p. 195 (1958).

    Google Scholar 

  132. Elmore, W. C., E. M. Little andW. E. Quinn: Neutrons from plasma compressed by an axial magnetic field (Scylla). Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 337. United Nations, Geneva 1958.

    Google Scholar 

  133. —— —— ——: Neutrons of possible thermonuclear origin. Phys. Rev. Letters1, 32 (1958).

    Google Scholar 

  134. Elwert, G.: Über die Ionisations- und Rekombinationsprozesse in einem Plasma und die Ionisationsformel der Sonnenkorona. Z. Naturforsch.7a, 432 (1952).

    Google Scholar 

  135. —— Verallgemeinerte Ionisationsformel eines Plasmas. Z. Naturforsch.7a, 703 (1952).

    Google Scholar 

  136. Etievant, C., P. Ginot, P. Hubert, P. Rebut, B. Taquet andA. Torossain: Experiments with T. A. 2000. Proceedings of the fourth international conference on ionization phenomena in pases, held in Uppsala 1959, Vol. 2, 967. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  137. Fay, H., E. Hintz andH. L. Jordan: Experiments on shock-compression of plasmas. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. II, 1046. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  138. Field, C. B.: Radiation by plasma oscillations. Astrophys. J.124, 555 (1956).

    Google Scholar 

  139. Filippov, N. V.: Investigation of pressures in a powerful pulsed gas discharge, using a piezoelectric measuring device. Plasma physics and the problem of controlled thermonuclear reactions, edited by M. A. LEONTOVICH, Vol. III. p. 280. London, New York, Paris, Los Angeles: Pergamon Press 1959.

    Google Scholar 

  140. Finkelnburg, W., u.H. Maecker: Elektrische Bögen und thermisches Plasma. Handbuch der Physik, herausgeg. v.S. Flügge, Bd. 22, 254. Berlin-Göttingen-Heidelberg: Springer-Verlag 1956.

    Google Scholar 

  141. ——, u.Th. Peters: Kontinuierliche Spektren. Handbuch der Physik, herausgeg. v.S. Flügge, Bd. 28, 79. Heidelberg: Springer-Verlag Berlin-Göttingen 1957.

    Google Scholar 

  142. Förster, H., andJ. Schlüter: Measurements of conductivity on linear pinch discharges by means of magnetic probes. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. II, 867. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  143. Ford, F. C.: An enhanced magnetic mirror machine. UCRL-report No. 4363. University of California 1954.

    Google Scholar 

  144. --, andS. G. Zizzo: General experimental results (Table top results). Papers presented at the controlled thermonuclear conference, held at Washington, D.C.-1958, TID-7558, p. 184 (1958).

    Google Scholar 

  145. Frie, W. H. Maecker, A. Michel, H. Motschmann u.H. Schindler: Über Untersuchungen an linearen Stoβentladungen. Z. Naturforsch.16a, 121 (1961)

    Google Scholar 

  146. Fünfer, E., H. Herold, G. Lehner, H. Tuczek u.C. Andelfinger: Neutronen- und Röntgenstrahlung beim stabilisierten linearen Pinch-Effekt. Z. Naturforsch.14a, 329 (1959).

    Google Scholar 

  147. ——,G. Lehner u.H. Tuczek: Bewegungsvorgänge beim linearen Pincheffekt und Runaway-Elektronen. Z. Naturforsch.15a, 566 (1960).

    Google Scholar 

  148. ——, etW. Müller: Photographie et cinématographie des phénomènes balistiques à l'aide de cellules de Kerr. Actes du deuxième congrès international de photographie et cinématographie ultra-rapides, Paris 1954, p. 244. Paris: Dunod 1956.

    Google Scholar 

  149. Gabor, D.: Plasma oscillations. Brit. J. Appl. Phys.2, 209 (1951).

    Google Scholar 

  150. Gabovich, M. D., L. L. Pasechnik andV. G. Yazeva: Observation of ion oscillations in a plasma. Soviet Phys. JETP11, 1033 (1960).

    Google Scholar 

  151. Gallet, R. M., J. M. Richardson, B. Wieder, C. B. Ward andG. N. Harding: Microwave whistler mode propagation in a dense laboratory plasma. Phys. Rev. Letters4, 347 (1960).

    Google Scholar 

  152. Gambling, W. A.: Temperatures in the hydrogen arc plasma. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. I, 374. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  153. Gardner, C. S., H. Hoertzel, H. Grad, C. S. Morawetz, M. H. Rose andH. Rubin: Hydromagnetic shock waves in high-temperature plasmas. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 31, 230. United Nations, Geneva 1958.

    Google Scholar 

  154. Garren, A., R. J. Ridell, L. Smith, G. Bing, L. R. Henrich, T. G. Northrop andJ. E. Roberts: Individual particle motion and the effect of scattering in an axillary symmetric magnetic field. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 31, 65. United Nations, Geneva 1958.

    Google Scholar 

  155. Gibson, A.: Runaway electrons. Terzo congresso internazionale sui fenomeni d'ionizzazione nei gas, tenuto a Venezia 1957, p. 365. Società italiana di fisica, Milano 1957.

    Google Scholar 

  156. Gottstein, K.: Die Katalyse eines Kernfusionsprozesses durch Mü-Mesonen. Physik. Bl.13, 165 (1957).

    Google Scholar 

  157. Grad, H.: Theory of cusped geometries. Report of the institute of math. Science, New York NYO-7969.

    Google Scholar 

  158. ——, andH. Rubin: Hydromagnetic equilibria and force-free-fields. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 31, 190. United Nations, Geneva 1958.

    Google Scholar 

  159. Granowsky, W. L.: Der Elektrische Strom im Gas, Bd. I, p. 288–324. Berlin: Akademie-Verlag 1955.

    Google Scholar 

  160. Green, T. S.: Evidence for the containment of a hot, dense plasma in a theta pinch. Phys. Rev. Letters5, 297 (1960).

    Google Scholar 

  161. ——, andG. B. F. Niblett: Rayleigh-Taylor instabilities of a magnetically accelerated plasma. Nuclear Fus. J. Plasma Phys. Thermonucl. Fus.1, 42 (1960).

    Google Scholar 

  162. Griem, H.: Recent developments in line broadening theory for high temperature gases. Conference on extremely high temperatures, edited byH. Fischer andL. C. Mansur, p. 93. New York: J. Wiley & Sons, Inc. 1958.

    Google Scholar 

  163. Griem, H. R., andA. C. Kolb: Advances in the theory of stark broadening of spectral lines. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. II, 808. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  164. —— —— andW. R. Faust: Bremsstrahlung from dense plasmas. Phys. Rev. Letters2, 281 (1959).

    Google Scholar 

  165. —— —— andK. Y. Shen: Stark broadening of hydrogen lines in a plasma. Phys. Rev.116, 4 (1959).

    Google Scholar 

  166. —— andK. Y. Shen: Stark broadening of hydrogenic ion lines in a plasma. University of Maryland, Physics Department College Park, Maryland 1960.

    Google Scholar 

  167. Habijanec, St.: Röntgenstrahlung durch Runaway-Elektronen beim stabilisierten, linearen Pinch-Effekt. Diplomarbeit am Laboratorium für Technische Physik der Technischen Hochschule München 1960.

    Google Scholar 

  168. Hain, K., G. Hain, K. V. Roberts, S. J. Roberts andW. Köppendörfer: Fully ionized pinch collapse. Z. Naturforsch.15a, 1039 (1960).

    Google Scholar 

  169. ——R. Lüst u.A. Schlüter: Stability problems of a plasma. Terzo congresso internazionale sui fenomeni d'ionizzazione nei gas, tenuto a Venezia 1957, p. 458. Società italiana di fisica, Milano 1957.

    Google Scholar 

  170. —— —— —— Hydromagnetic waves of finite amplitude in plasma with nonisotropic pressure perpendicular to a magnetic field. Rev.s Modern Phys.32, 967 (1960).

    Google Scholar 

  171. Harding, G. N., A. N. Dellis, A Gibson, B. Jones, D. J. Lees, R. W. P. McWhirter, S. A. Ramsden andS. Ward: Diagnostic techniques used in controlled thermonuclear research at Harwell. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 365. United Nations, Geneva 1958.

    Google Scholar 

  172. Heitler, W.: Quantum theory of radiation, Oxford 1954.

    Google Scholar 

  173. Hermansdorfer, H.: Untersuchung der Elektronendichte beim linearen Pinch mit 8,7 mm-Wellen. Z. Naturforsch.15a, 979 (1960).

    Google Scholar 

  174. Hernqvist, K. G.: Plasma ion oscillations in electron beams. J. Appl. Phys.26, 544 (1955).

    Google Scholar 

  175. Herold, H., u.M. Keilhacker: wird veröffentlicht.

    Google Scholar 

  176. Hertweck, F., u.A. Schlüter: Die “Adiabatische Invarianz” des magnetischen Bahnmomentes geladener Teilchen. Z. Naturforsch.12a, 844 (1957).

    Google Scholar 

  177. Hettner, G.: Zur Theorie der Bremsstrahlung in Plasmen hoher Temperatur. Z. Physik150, 182 (1958).

    Google Scholar 

  178. Hoh, F. C., andB. Lehnert: Experiments on diffusion in a plasma column in a longitudinal magnetic field. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. II, 604. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  179. Ioffe, M. S., R. J. Sobolyev, V. G. Telkovsky andE. E. Yushmanov: Measurement of the lifetime of a low density plasma in a magnetic mirror trap. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. II, 1009. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  180. Jackson, J. D.: Longitudinal plasma oscillations. J. Nuclear Energy, Part. C1, 171 (1960).

    Google Scholar 

  181. Jahnke-Emde-Lösch: Tafeln Höherer Funktionen, p. 157. Stuttgart: B. G. Teubner 1960.

    Google Scholar 

  182. Jahoda, F. C., E. M. Little, W. E. Quinn, A. G. Sawyer andT. F. Stratton: Continuum radiation in the X-ray and visible regions from a magnetically compressed plasma (Scylla). Phys. Rev.119, 843 (1960).

    Google Scholar 

  183. ——G. A. Sawyer andT. F. Stratton: Photoelectric spectroscopy of a magnetically compressed plasma. Bull. Phys. Soc. II,5, 308 (1960).

    Google Scholar 

  184. Johnson, J. L., C. R. Oberman, R. M. Kulsrud andE. A. Frieman: Some stable hydromagnetic equilibria. Phys. Fluids1, 281 (1958) und: Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 31, 198. United Nations, Geneva 1958.

    Google Scholar 

  185. -- -- -- -- On the stability of hydromagnetic equilibria with varying rotational transform. AEC-Report No. NYO-7904 (PM-S-34, 1958).

    Google Scholar 

  186. Josephson, V.: Instability mechanisms in transverse pinches. Phys. Rev. Letters5, 416 (1960).

    Google Scholar 

  187. ——M. H. Dazey andR. F. Wuerker: A neutron-producing mechanism in transverse pinches. Phys. Rev.121, 674 (1961).

    Google Scholar 

  188. Judd, D. L., W. M. McDonald andM. N. Rosenbluth: End leakage losses from the mirror machine. AEC-Report. WASH289, 158 (1959).

    Google Scholar 

  189. Jürgens, G.: Temperatur und Elektronendichte in einem wasserstabilisierten Lichtbogen. Z. Physik134, 21 (1952/53).

    Google Scholar 

  190. Jukes, J. D.: Plasma cyclotron radiation and fusion reactors. J. Nuclear Energy, Part. C3, 1 (1961).

    Google Scholar 

  191. Kadomtsev, B. B., andA. V. Nedospasov: Instability of the positive column in a magnetic field and the “Anomalous” diffusion effect. J. Nuclear Energy, Part C1, 230 (1960).

    Google Scholar 

  192. Kampen, N. G. van: On the theory of stationary waves in plasmas. Physica21, 949 (1955).

    Google Scholar 

  193. Kaufman, A. N.: Ambipolar effects in mirror losses. Atomic Energy Commission-Report TID-7520 (Part. 2), p. 387 (1956).

    Google Scholar 

  194. Kemp, N. H., andH. E. Petschek: Theory of the flow in the magnetic annular shock tube. Phys. Fluids2, 599 (1959).

    Google Scholar 

  195. Kihara, T.: Ion-electron relaxation of plasma in a strong magnetic field. J. Phys. Soc. Japan14, 1751 (1959).

    Google Scholar 

  196. Kippenhahn, R., u.H. L. de Vries: Zur Energieabgabe eines modulierten Ionenstrahls im Plasma mit Magnetfeld. Z. Naturforsch.15a, 506 (1960).

    Google Scholar 

  197. Klages, G.: Einführung in die Mikrowellenphysik. Darmstadt: D. Steinkopff 1956.

    Google Scholar 

  198. Knorr, G.: Über den Ionisationszustand und die Ausstrahlung von Fremdgasen in einem Wasserstoffplasma. Z. Naturforsch.13a, 941 (1958).

    Google Scholar 

  199. König, H. R.: Equilibrium in helical fields. TID-7520, 501 (1959).

    Google Scholar 

  200. Kolb, A. C.: Magnetic compression of shock preheated deuterium. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 31, 328. United Nations, Geneva 1958.

    Google Scholar 

  201. —— Influence of end losses and field trapping in magnetic compression of plasmas. Bull. Am. Phys. Soc. II,5, 308 (1960).

    Google Scholar 

  202. —— Recent progress in shock wave research. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. II, 1021. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  203. ——C. B. Dobbie andH. R. Griem: Field mixing and associated neutron production in a plasma. Phys. Rev. Letters3, 5 (1959).

    Google Scholar 

  204. ——, andH. Griem: Theory of line broadening in multiplet spectra. Phys. Rev.111, 514 (1958).

    Google Scholar 

  205. ——H. R. Griem andW. R. Faust: Dense plasmas confined by external fields. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. II, 1037. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  206. Komelkov, V. S., U. V. Skvortsov andS. S. Tserevitinov: Development of a powerful discharge in deuterium. Proceedings of the second united nations international conference, on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 31, 374. United Nations, Geneva 1958.

    Google Scholar 

  207. Kovalski, N. G., J. M. Podgorny andM. M. Stepanenko: Investigation of fast electrons in powerful pulsed discharges. Soviet Physics JETP38, 1439 (1960).

    Google Scholar 

  208. —— —— —— Untersuchung der schnellen Elektronen in starken Impulsentladungen. Physik. Abhandl. Sowjetunion3, 278 (1960).

    Google Scholar 

  209. Kramers, H. A.: On theory of X-ray absorption of the continuous X-ray spectrum. Phil. Mag. Ser. IV.46, 836 (1923).

    Google Scholar 

  210. Kruskal, M. D.: Large-Scale plasma instability in the stellarator. AEC-Report No. NYO-6045 (PM-S-12, 1954).

    Google Scholar 

  211. —— Landau damping. La théorie des gaz neutres et ionisés, par C.de Witt etJ. F. Detoeuf, p. 285. Paris: Hermann. New York: J. Wiley & Sons, Inc. 1960.

    Google Scholar 

  212. ——J. L. Johnson, M. B. Gottlieb andL. M. Goldman: Hydromagnetic instability in a stellarator. Phys. Fluids1, 421 (1958) und: Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 217. United Nations, Geneva 1958.

    Google Scholar 

  213. ——, andR. M. Kulsrud: Equilibrium of a magnetically confined plasma in a toroid. Phys. Fluids1, 265 (1958) und: Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 31, 213. United Nations, Geneva 1958.

    Google Scholar 

  214. ——, andC. R. Oberman: Stability of plasma in static equilibrium. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 31, 137. United Nations, Geneva 1958.

    Google Scholar 

  215. ——, andM. Scharzschild: Some instabilities of a completely ionized plasma. Proc. Roy. Soc. London A223, 348 (1954).

    Google Scholar 

  216. ——, andJ. L. Tuck: The instability of a pinched fluid with a longitudinal magnetic field. Proc. Roy. Soc. London A245, 222 (1958).

    Google Scholar 

  217. Kurchatov, I. V.: On the possibility of producing thermonuclear reactions in a gas discharge. Atomnaya Energ.1, Nr. 3, 65 (1956).

    Google Scholar 

  218. —— Research on controlled thermonuclear reactions at the atomic energy institute of the USSR academy of sciences. J. Nuclear Energy II8, 168 (1958).

    Google Scholar 

  219. Kvartskhava, I. F., K. N. Kervalidze andYu. S. Gvaladze: Instability of an induction pinch. Soviet Phys. JETP11, 1182 (1960).

    Google Scholar 

  220. Landau, L. D.: On the vibrations of the electronic plasma. J. Phys. (USSR)10, 25 (1946).

    Google Scholar 

  221. ——, andE. M. Lifshitz: The classical theory of fields. London-Paris: Pergamon Press 1959.

    Google Scholar 

  222. Larkin, A. I.: Passage of particles through a plasma. Soviet Phys. JETP37, 186 (1960).

    Google Scholar 

  223. Lawson, J. D.: Some criteria for a power producing thermonuclear reactor. Proc. Phys. Soc. B70, 6 (1957).

    Google Scholar 

  224. Lehner, G.: Das dynamische Verhalten des Hohlpincheffektes. Z. Naturforsch.16a, 548 (1961)

    Google Scholar 

  225. —— Die hydromagnetischen Instabilitäten des Hohlpincheffektes. Z. Naturforsch.16a, 700 (1961)

    Google Scholar 

  226. Lehnert, B.: Magneto-hydrodynamic waves in liquid sodium. Phys. Rev.94, 815 (1954).

    Google Scholar 

  227. —— Diffusion processes in the positive column in a longitudinal magnetic field. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 349. United Nations, Geneva 1958.

    Google Scholar 

  228. —— Plasma physics on cosmical and laboratory scale. Nuovo Cimento, Supplement zu Bd.13. Serie X, 59 (1959).

    Google Scholar 

  229. ——, andG. Sjögren: A liquid conductor model of the Hollow pinch. J. Nuclear Energy, Part. C1, 121 (1960).

    Google Scholar 

  230. Leontovich, M. A.: Plasma physics and the problem of controlled thermonuclear reactions, Vo. I, II, III, IV. Oxford, London, New York, Paris: Pergamon Press 1961.

    Google Scholar 

  231. ——, andS. M. Osovets: On the mechanism of current constriction in highcurrent gas discharges. J. Nuclear Energy4, 209 (1957).

    Google Scholar 

  232. Liebing, L., E. Kollman u.F. Früngel: Mehrfach-Kerrzellensystem mit rechteckiger Verschlußcharakteristik. Paper presented at the 5th international congress on high-speed photography, held in Washington 1960.

    Google Scholar 

  233. Linhart, J. G.: Plasma physics. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  234. Lisitano, G.: Private Mitteilung.

    Google Scholar 

  235. Little, E. M., andW. E. Quinn: Hard X-ray emission form scylla. Bull. Am. Phys. Soc. II,5, 341 (1960).

    Google Scholar 

  236. Looney, D. H., andS. C. Brown: The excitation of plasma oscillations. Phys. Rev.93, 965 (1954).

    Google Scholar 

  237. Los Alamos scientific laboratory of the university of California: Proposal for Zeeman magnetic field measurements. LAMS-2444, p. 34. Los Alamos, New Mexico 1960.

    Google Scholar 

  238. —— Soft X-rays measurements on Scylla. LAMS-2488, p. 31. Los Alamos, New Mexico 1960.

    Google Scholar 

  239. —— X-ray diagnostics on Scylla. LAMS-2464, p. 14. Los Alamos, New Mexico 1960.

    Google Scholar 

  240. Luce, J. S.: Intense gaseous discharges. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 31, 305. United Nations, Geneva 1958.

    Google Scholar 

  241. —— Trapping of high-energy ions within an arc wall. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. II, p. 1002. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  242. Lüst, R.: Magneto-hydrodynamische Stoßwellen in einem Plasma unendlicher Leitfähigkeit. Z. Naturforsch.8a, 277 (1953).

    Google Scholar 

  243. —— Stationäre magneto-hydrodynamische Stoßwellen beliebiger Stärke. Z. Naturforsch.10a, 125 (1955).

    Google Scholar 

  244. —— Über die Ausbreitung von Wellen in einem Plasma. Fortschr. d. Physik7, 503 (1959).

    Google Scholar 

  245. ——, u.A. Schlüter: Axialsymmetrische magneto-hydrodynamische Gleichgewichtskonfigurationen. Z. Naturforsch.12a, 850 (1957).

    Google Scholar 

  246. Lukyanov, S. Yu., andV. I. Sinitsin: Spectroscopic study of high-temperature plasmas. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 358. United Nations, Geneva 1958.

    Google Scholar 

  247. Lundquist, S.: On the stability of magneto-hydrostatic fields. Phys. Rev.83, 307 (1951).

    Google Scholar 

  248. Magnus, W., u.F. Oberhettinger: Formeln und Sätze für die speziellen Funktionen der mathematischen Physik, 2. Auflage, p. 28f. Berlin-Göttingen-Heidelberg: Springer-Verlag 1948.

    Google Scholar 

  249. Margenau, H.: Formulas for estimating widths of spectral lines emitted from plasmas and their limits of validity. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. II, 799. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  250. Marshak, R.: Ann. N. Y. Acad. Sci.41, 49 (1941).

    Google Scholar 

  251. Marshall, J.: Accelaration of plasma into vacuum. proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 31, 341. United Nations, Geneva 1958.

    Google Scholar 

  252. Mather, J. W.: Los Alamos scientific laboratory progress report (1953), unpublished, zitiert in Phys. Rev.119, 831 (1960).

    Google Scholar 

  253. -- Washington Report Wash-184, 51 (1954), unpublished, zitiert in Phys. Rev.119, 831 (1960).

    Google Scholar 

  254. ——, andA. H. Williams: Neutron production in Columbus II. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 26. United Nations, Geneva 1958.

    Google Scholar 

  255. Medford, R. D., A. L. T. Powell, J. D. Herbert, R. C. Pottinger andJ. K. Wright: “Prize”: A preionized theta-pinch. Nature186, 706 (1960).

    Google Scholar 

  256. Meyer, F., u.H. U. Schmidt: Torusartige Plasmakonfigurationen ohne Gesamtstrom durch ihren Querschnitt im Gleichgewicht mit einem Magnetfeld. Z. Naturforsch.13a, 1005 (1958).

    Google Scholar 

  257. Miller, C. O.: US-Patent 2,.400 887 (1946).

    Google Scholar 

  258. Motley, R., andM. A. Heald: Use of multiple polarizations for electron density profile measurements in high-temperature plasmas. Symp. Proc., Vol. IX., Millimeter waves, p. 141. Brooklyn, New York: Polytechnic Press 1959.

    Google Scholar 

  259. ——C. D. Lustig andS. Sanders: Synchrotron radiation from Runaway electons in the stellarator. J. Nuclear Energy, Part. C3, 17 (1961).

    Google Scholar 

  260. Nagle, D. E., W. E. Quinn, F. L. Ribe andW. B. Riesenfeld: Velocity spectrum of protons and tritons from thed-d-reaction in Scylla. Phys. Rev.119, 857 (1960).

    Google Scholar 

  261. —— ——W. B. Riesenfeld andW. Leland: Ion temperature in Scylla, as determined from the reactionD (d, p,) T. Phys. Rev. Letters3, 318 (1959).

    Google Scholar 

  262. Neufeld, I., andR. H. Ritchie: Passage of charged particles through a plasma. Phys. Rev.98, 1632 (1955).

    Google Scholar 

  263. Newcomb, W. A., andA. N. Kaufman: Hydromagnetic stability of a tubular pinch. UCRL-report 5434. University of California 1960.

    Google Scholar 

  264. Niblett, G. B. F.: Rapid compression of a plasma with azimuthal currents. Proceedings of the IEE, Vol. 106, Part A,152 (1959).

    Google Scholar 

  265. ——, andT. S. Green: Radial hydromagnetic oscillations. Proc. Phys. Soc.74, 737 (1959).

    Google Scholar 

  266. Nilsson, N. R.: Proceedings of the fourth international conference on ionization phenomena in gases (Uppsala 1959) Vol. II. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  267. Parker, E. N.: Dynamical instability in an anisotropic isonized gas of low density. Phys. Rev.109, 1874 (1958).

    Google Scholar 

  268. Patrick, R. M.: High-speed shock waves in a magnetic annular shock tube. Phys. Fluids2, 589 (1959).

    Google Scholar 

  269. Payne, R. M., andS. Kaufman: Physical measurements on Heavy-Current discharges. Convention on thermonuclear processes, London 1959, paper No. 2900 (1959).

    Google Scholar 

  270. Penning, F. M.: Abnormale electronen snelheden en trillingen van zeer hooge frequentie in ontladingsbuizen. Physica (alte Serie)6, 241 (1926).

    Google Scholar 

  271. Pines, D., andD. Bohm: A collective description of electron interactions: II. Collective vs individual particle aspects of the interactions. Phys. Rev.85, 338 (1952).

    Google Scholar 

  272. Pollock, H. C., L. M. Goldman andW. F. Westendorp: Multiple magnetic probe measurements in a neutron producing magnetically compressed deuterium plasma. Bull. Am. Phys. Soc. II,5, 367 (1960).

    Google Scholar 

  273. Post, R. F.: Controlled fusion research. — An application of the physics of high-temperature plasmas. Rev. Modern Phys.28, 338 (1956).

    Google Scholar 

  274. —— Summary of UCRL pyrotron (Mirror machine) program. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32,245 (1958). United Nations, Geneva 1958.

    Google Scholar 

  275. —— Summary of UCRL pyrotron (Mirror machine) program. Progress in nuclear energy, Series XI: Plasma physics and thermonuclear research, edited byC. Longmire, Vol. 1, p. 154. London, New York, Paris: Pergamon Press 1959.

    Google Scholar 

  276. —— High temperature plasma research and controlled fusion. Ann. Rev. Nuclear Sci.9, 367 (1959).

    Google Scholar 

  277. —— Some aspects of high temperature plasma research with the mirror machine. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. II, p. 987. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  278. ——R. E. Ellis, F. C. Ford andM. N. Rosenbluth: Stable confinement of a high-temperature plasma. Phys. Rev. Letters4, 166 (1960).

    Google Scholar 

  279. Pradhan, T.: Plasma oscillations in a steady magnetic field: Circularly polarized electromagnetic modes. Phys. Rev.107, 1222 (1957).

    Google Scholar 

  280. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. I und II. Amsterdam: North-Holland Publishing Comp. 1960 (identisch mit265.

    Google Scholar 

  281. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 31 and 32. United Nations, Geneva 1958.

    Google Scholar 

  282. Quinn, W. E., E. M. Little andF. L. Ribe: Radio-frequency preionization of Syclla. Bull. Am. Phys. Soc. II,5, 341 (1960).

    Google Scholar 

  283. —— —— —— andJ. L. Tuck: Preionized operation of Scylla. Bull. Am. Phys. Soc. II,5, 328 (1960).

    Google Scholar 

  284. Ramqvist, T.: Some Swedish cameras for high-speed photography. Bericht über den IV. internationalen Kongreß für Kurzzeitphotographie und Hochfrequenzkinematographie. Köln 1958, p. 85. Darmstadt: Verlag Dr. O. Helwich 1959.

    Google Scholar 

  285. Ratcliffe, J. A.: The magneto-ionic theory. Cambridge: University Press 1959.

    Google Scholar 

  286. Remy, E.: Toroidaler Thetapinch. Tätigkeitsbericht der Abteilung Plasmaphysik des Max-Planck-Instituts für Physik und Astrophysik, München, p. 12 (1961).

    Google Scholar 

  287. Ribe, F. L.: Recent experimental results on fast-compression plasma heating and rotating plasmas. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. II, 1032. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  288. Rietjens, L. H. Th., andC. M. Braams: Detection of heavy particles in thermonuclear reaction experiments. Nuclear Instr. & Methods4, No. 5, 363 (1959).

    Google Scholar 

  289. Riezler, W., u.W. Walcher: Kerntechnik, p. 5. Stuttgart: Teubner 1958.

    Google Scholar 

  290. Roberts, K. V.: End loss in the linearΘ-pinch. J. Nuclear Energy, Part. C1, 243 (1960).

    Google Scholar 

  291. Rose, B., A. E. Taylor andE. Wood: Measurement of the neutron spectrum from ZETA. Nature181, 1630 (1958).

    Google Scholar 

  292. Rosenbluth, M. N.: The stabilized pinch. Terzo congresso internazionale sui fenomeni d'ionizzazione nei gas, tenuto a Venezia 1957, p. 903. Società italiana di fisica, Milano 1957.

    Google Scholar 

  293. --R. Garwin andA. Rosenbluth: Infinite conductivity theory of the pinch. Los Alamos report LA-1850 (1954).

    Google Scholar 

  294. ——, andC. L. Longmire: Stability of plasmas confined by magnetic fields. Ann. Phys.1, 120 (1957).

    Google Scholar 

  295. ——W. M. Mac Donald andD. L. Judd: Fokker-Planck-Equation for an inverse-square force. Phys. Rev.107, 1 (1957).

    Google Scholar 

  296. ——, andN. Rostoker: Theoretical structure of plasma equations. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 31, 144. United Nations, Geneva 1958.

    Google Scholar 

  297. Rostocker, N., andM. N. Rosenbluth: Test particles in a completely ionized plasma. Phys. Fluids3, 1 (1960).

    Google Scholar 

  298. Schardin, H.: The relationship between maximum frame frequency and resolution in rotating mirror framing cameras. Third international congress high-speed photography. London: Butterworths Sci. Publ. 1956.

    Google Scholar 

  299. Schlüter, A.: Dynamik des Plasmas II. Z. Naturforsch.6a, 73 (1951).

    Google Scholar 

  300. —— Plasma in Magnetfeld. Ann. Physik, 6 Folge10, 422 (1952).

    Google Scholar 

  301. —— Der Gyro-Relaxations-Effekt. Z. Naturforsch.12a, 822 (1957).

    Google Scholar 

  302. —— Kraftfreie Magnetfelder II. Z. Naturforsch.12a, 855 (1957).

    Google Scholar 

  303. Schmidt, H. U.: Die aufheizung eines torusförmig begrenzten Plasmas in einem langsam oszillierenden Magnetfeld. Z. Naturforsch.14a, 975 (1959).

    Google Scholar 

  304. Schwinger, J.: On the classical radiation of accelerated electrons. Phys. Rev.75, 1912 (1949).

    Google Scholar 

  305. Shafranov, V. D.: On the stability of a cylindrical gas conductor in a magnetic field. J. Nuclear Energy5, 86 (1957).

    Google Scholar 

  306. —— On magneto-hydrodynamical equilibrium configurations. Soviet Physics JETP6, 545 (1958).

    Google Scholar 

  307. Simon, A.: Diffusion of arc plasmas across a magnetic field. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 343. United Nations, Geneva 1958.

    Google Scholar 

  308. —— An introduction to thermonuclear research. London, New York, Paris, Los Angeles: Pergamon Press 1959.

    Google Scholar 

  309. Skinner, A.: A versatile rotating mirror camera. Bericht über den IV. internationalen Kongreß für Kurzzeitphotographie und Hochfrequenzkinematographie, Köln 1958, p. 172. Darmstadt: Verlag Dr. O. Helwich 1959.

    Google Scholar 

  310. Snell, A. H.: The DCX approach to the thermonuclear problem, progress since Geneva. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. II, 997. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  311. Sommerfeld, A.: Atombau und Spektrallinien II. Braunschweig: Vieweg und Sohn 1960.

    Google Scholar 

  312. Spitzer, L. jr.: The stability of isolated clusters. Monthly Notices Roy. Astron. Soc.100, 396 (1940).

    Google Scholar 

  313. Spitzer, L.: Magnetic fields and particle orbits in a high-density stellarator. U.S. Atomic Energy Commission, Report No. NYO-997 (PM-S-4, 1952).

    Google Scholar 

  314. Spitzer, L. jr.: Physics of fully ionized gases. New York: Interscience Publishers, Inc. 1956.

    Google Scholar 

  315. —— Physics of fully ionized gases, p. 38. New York: Intersicence Publishers Inc. 1956.

    Google Scholar 

  316. —— Physics of fully ionized gases, p. 84. New York: Interscience Publishers, Inc. 1956.

    Google Scholar 

  317. —— The stellarator concept. The Physics of Fluids1, 253 (1958) und: Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 181. United Nations, Geneva 1958.

    Google Scholar 

  318. Spitzer, L.: Magnetic fields and particle orbits in a high-density stellarator. Nuclear Sci. Abstr.13, No. 1216 (1959).

    Google Scholar 

  319. Spitzer, L. jr.: Particle diffusion across a magnetic field. Phys. Fluids3, 659 (1960).

    Google Scholar 

  320. Stepanov, K. N., andV. I. Pakhomov: Magnetic bremsstrahlung of a confined plasma. Soviet Physics JETP11, 1126 (1960).

    Google Scholar 

  321. Stickforth, J.: Zur Theorie der Bremsstrahlung in Plasmen hoher Temperatur. Dissertation an der Techn. Hochschule München 1960.

    Google Scholar 

  322. Stix, T. H.: Oscillations of a cylindrical plasma. Phys. Review106, 1146 (1957).

    Google Scholar 

  323. —— Generation and thermalization of plasma waves. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 31, 125, United Nations, Geneva 1958.

    Google Scholar 

  324. —— Generation and thermalization of plasma waves. Phys. Fluids1, 308 (1958).

    Google Scholar 

  325. —— Ion cyclotron heating of a plasma. J. Nuclear Energy, Part. C,2, 84 (1961).

    Google Scholar 

  326. ——, andR. W. Palladino: Ion cyclotron resonance. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 31, 282. United Nations, Geneva 1958.

    Google Scholar 

  327. —— —— Experiments on ion cyclotron resonance. Phys. Fluids1, 446 (1958).

    Google Scholar 

  328. —— —— Observation of ion cyclotron waves. Phys. Fluids3, 641 (1960).

    Google Scholar 

  329. Stodiek, W., R. A. Ellis jr. andJ. G. Gorman: Loss of charged particles during ionization in stellarator discharges. Phys. Fluids3, 1035 (1960).

    Google Scholar 

  330. Stratton, T. F., F. C. Jahoda andG. A. Sawyer: Soft X-radiation from a magnetically compressed plasma. Bull. Am. Phys. Soc. II,5, 308 (1960).

    Google Scholar 

  331. Strelkov, V. S.: Study of radiation from an electrodeless discharge in deuterium. Plasma physics and the problem of controlled thermonuclear reactions, Vo. IV,181. Oxford, London, New York, Paris: Pergamon Press 1960.

    Google Scholar 

  332. Suydam, B. R.: Stability of a linear pinch. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 31, 157. United Nations, Geneva 1958.

    Google Scholar 

  333. Taylor, J. B.: Radial oscillations of cylindrical plasma confined by axial magnetic fields. Proceedings of a conference on the theoretical aspects of controlled fusion research, held at Gatlinburg 1959, 26. United States Atomic Energy Commission, TID-7582 (1959).

    Google Scholar 

  334. Tayler, R. I.: Hydromagnetic instabilities of an ideally conducting fluid. Proc. Phys. Soc. B70, 31 (1957).

    Google Scholar 

  335. —— The influence of an axial magnetic field on the stability of a constricted gas discharge. Proc. Phys. Soc. B70, 1049 (1957).

    Google Scholar 

  336. Thompson, W. B.: Thermonuclear reaction rates. Proc. Phys. Soc.70, 1 (1957).

    Google Scholar 

  337. ——, andJ. Hubbard: Long range forces and the diffusion coefficients of a plasma. Rev. Modern Phys.32, 714 (1960).

    Google Scholar 

  338. Tonks, L.: Astron E-Layer calculations. UCRL-report 9002, p. 38. University of California 1959.

    Google Scholar 

  339. —— Self-consistent field of Single-type electrons in a uniform magnetic field. Phys. Rev.114, 637 (1959).

    Google Scholar 

  340. —— Self-consistent field and motion of electrons which have a range in canonical angular momentum in a uniform magnetic field. Phys. Rev.118, 390 (1960).

    Google Scholar 

  341. -- Astron E-Layer Calculation. UCRL-report 9106, p. 40. University of California 1960.

    Google Scholar 

  342. -- Astron E-Layer Calculations. UCRL-report 9243, p. 39. University of California 1960.

    Google Scholar 

  343. Traving, G.: Über die Theorie der Druckverbreiterung von Spektrallinien. Karlsruhe: Verlag G. Braun 1960.

    Google Scholar 

  344. Trivelpiece, A. W., andR. W. Gould: Space charge waves in cylindrical plasma columns. J. App. Phys.30, 1784 (1959).

    Google Scholar 

  345. Trubnikov, B. A., andV. S. Kudryavtsev: Plasma radiation in a magnetic field. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 31, 93. United Nations, Geneva, 1958.

    Google Scholar 

  346. Tuck, J. L.: Review of controlled thermonuclear research at Los Alamos for mid 1958. Proceedings of the second united nations international conference on the peaceful uses of atomic Energy, held in Geneva 1958, Vol. 32, 3. United Nations, Geneva 1958.

    Google Scholar 

  347. Unsöld, A.: Physik der Sternatmosphären. Berlin-Göttingen-Heidelberg Springer-Verlag 1955.

    Google Scholar 

  348. Walker, E. W.: The Kerr-cell Cine-camera. Actes du deuxième congrès international de photographie et cinématographie ultrarapides, Paris 1954, p. 99. Paris: Dunod 1956.

    Google Scholar 

  349. Wandel, C. F., T. Hesselberg Jensen andO. Kofoed-Hansen: A compilation of some rates and cross-sections of interest in controlled thermonuclear research. Nuclear Instr. & Methods4, 249 (1959).

    Google Scholar 

  350. Ware, A. A.: Sceptre III A. Convention on thermonuclear processes, paper No. 2898. London 1959.

    Google Scholar 

  351. —— The energy loss problem with sceptre III A. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. 2, 931. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  352. Weibel, E. S.: Note on the confinement of a plasma by magnetostatic fields. Phys. Fluids2, 52 (1959).

    Google Scholar 

  353. Wharton, C. B.: Microwave radiation measurements of very hot plasmas. Proceedings of the fourth international conference on ionization phenomena in gases, held in Uppsala 1959, Vol. II, 737. Amsterdam: North-Holland Publishing Comp. 1960.

    Google Scholar 

  354. ——J. C. Howard andO. Heinz: Plasma diagnostic developments in the UCRL pyrotron program. Proceedings of the second united nations international conference on the peaceful uses of atomic energy, held in Geneva 1958, Vol. 32, 388. United Nations, Geneva 1958.

    Google Scholar 

  355. Wharton, C. B. andD. M. Slager: Microwave determination of plasma density profiles. J. Appl. Phys.31, 428 (1960).

    Google Scholar 

  356. Whitmer, R. F.: Microwave studies of the electron loss processes in gaseous discharges. Phys. Rev.104, 572 (1956).

    Google Scholar 

  357. Wilcox, J. M.: Hothouse-hydromagnetic wave propagation. UCRL report 8775, p. 67. University of California 1959.

    Google Scholar 

  358. ——F. I. Boley andA. W. de Silva: Experimental study of Alfvén-wave properties. Phys. Fluids 3, 15 (1960).

    Google Scholar 

  359. Wilhelm, H.: Richtungsverteilung der Neutronenenergie am linearen Pinch. Diplomarbeit, Techn. Hochschule München 1959.

    Google Scholar 

  360. Wilson, R. R.: Letter to the U.S. Atomic Energy Commission (1953), unpublished, zitiert in Phys. Rev.119, 831 (1960).

    Google Scholar 

  361. Wright, J. K., W. T. Eeles andJ. D. Herbert: Some experiments with an electrodeless discharge. Nature183, No. 4676, 1665 (1959).

    Google Scholar 

  362. ——, andN. J. Phillips: The confinement of shock-heated plasmas in mirror magnetic fields. J. Nuclear Energy, Part. C1, 240 (1960).

    Google Scholar 

  363. Wulff, H.: Diagnostics by spectroscopical means. Nuclear Instr. & Methods4, 352 (1959).

    Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Rights and permissions

Reprints and permissions

Copyright information

© 1962 Springer-Verlag OHG

About this paper

Cite this paper

Fünfer, E., Lehner, G. (1962). Plasmaphysik. In: Ergebnisse der Exakten Naturwissenschaften. Ergebnisse der Exakten Naturwissenschaften, vol 34. Springer, Berlin, Heidelberg. https://doi.org/10.1007/BFb0111114

Download citation

  • DOI: https://doi.org/10.1007/BFb0111114

  • Published:

  • Publisher Name: Springer, Berlin, Heidelberg

  • Print ISBN: 978-3-540-02808-6

  • Online ISBN: 978-3-540-37056-7

  • eBook Packages: Springer Book Archive

Publish with us

Policies and ethics