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E. I. Bichenkov, S. D. Gilev, and A. M. Trubachev, “Magnetic-cumulation generators using the transition of a semiconducting material to the conducting state,” Zh. Prikl. Mekh. Tekh. Fiz., No. 5 (1980).
K. Nagayama, “New method of magnetic flux compression by means of the propagation of shock-induced metallic transition in semiconductors,” Appl. Phys. Lett.,38, No. 2 (1981).
E. I. Bichenkov, S. D. Gilev, and A. M. Trubachev, “Shock-wave magnetic-cumulation generators,” in: Superstrong Magnetic Fields. Physics. Technology. Application, Proceedings of Third International Conference on the Generation of Megagauss Magnetic Fields [in Russian], V. M. Titov and G. A. Shvetsov (eds.), Nauka, Moscow (1984).
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A. I. Pavlovskii, N. P. Kolokol'chikov, M. I. Dolotenko, et al., “Dynamics of the collapse of the shell of a magnetic-cumulation generator of superstrong magnetic fields,” in: Superstrong Magnetic Fields. Physics. Technology. Application, Proceedings of Third International Conference on the Generation of Megagauss Magnetic Fields [in Russian], V. M. Titov and G. A. Shvetsov (eds.), Nauka, Moscow (1984).
Translated from Zhurnal Prikladnoi Mekhaniki i Tekhnicheskoi Fiziki, No. 3, pp. 15–24, May–June, 1987.
In conclusion, the authors thank K. Nagayama for making it possible to conduct and use the results of the series of experiments.
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Bichenkov, E.I., Gilev, S.D., Ryabchun, A.M. et al. Shock-wave method of generating megagauss magnetic fields. J Appl Mech Tech Phys 28, 331–339 (1987). https://doi.org/10.1007/BF00910614
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