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Magnetism pp 305–336Cite as

Principles of magnetic recording

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Abstract

Magnetic recording is based on remanence, i.e. on the possibility of writing stable or metastable magnetization configurations within a material. The information carrying medium is the heart of any recording (or storage) system. Of course it is complemented by write, erase, and readout devices.

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References

  1. S.H. Charap, Pu-ling Lu, Yanjun He, Thermal Stability of Recorded Information at High Densities, IEEE Trans. Magn. MAG-33 (1997) 978.

    Article  ADS  Google Scholar 

  2. D.A. Thomson, J.S. Best, The Future of Magnetic Storage Technology, IBM Journal of Research and Development 44 (2000) 311.

    Article  Google Scholar 

  3. Y. Sonobe, Y. Ikeda, Y. Tagashira, Composite Perpendicular Recording Media consisting of CoCrPt With Large Hk and CoCr with positive inter particle interaction, IEEE Trans. Magn. Mag-35 (1999) 2769.

    Article  ADS  Google Scholar 

  4. S.Y. Chou, Patterned Magnetic Nanostructures and Quantised Magnetic Disks, Proc. IEEE 85(1997) 652.

    Article  Google Scholar 

  5. Z.G. Wang, Y. Nakamura, Spin tunneling random access memory (STRAM), IEEE Trans, Magn. 32 (1996) 4022.

    Article  ADS  Google Scholar 

  6. M. Julliere, Phys. Lett. 54A (1975) 225.

    ADS  Google Scholar 

  7. J. Ashley, M.P. Bernal, G.W. Burr, H. C oufal, H. Guenther, J.A. Hofffnagle, C.M. Jefferson, B. Marcus, R.M. McFarlane, R.M. Shelby, G.T. Sincerbox, Holographic storage technology, IBM Journal of Research and Development 44 (2000) 341.

    Article  Google Scholar 

  8. P. Vettiger, M. Despont, U. Drechsler, U. Dürig, W. Häberle, M.I. Lutwyche, H.E. Rothuesen, R. Schutz, R. Widmer, G.K. Binnig, The “Millipede” — More than thousand tips for future AFM storage, IBM Journal of Research and Development 44 (2000) 323.

    Article  Google Scholar 

  9. J.C. Mallinson, The foundation of magnetic recording (1987) Academic Press, New York-London.

    Google Scholar 

  10. C.D. Mee, E.D. Daniel, Magnetic Recording (1990) McGraw-Hill, New York.

    Google Scholar 

  11. J.J.M. Ruigrok, Short wavelength magnetic recording (1990) Elsevier, New York.

    Google Scholar 

  12. H.N. Bertram, Theory of magnetic recording (1994) Cambridge Univ. Press.

    Google Scholar 

  13. W.K. Westmuze, Philips Res. Rep. 8 (1953) 148, article reproduit dans D.A. Thomson, J.S. Best, The Future of Magnetic Storage Technology, IBM Journal of Research and Development 44 (2000) 311 [2].

    Google Scholar 

  14. R.M. White, Introduction to magnetic recording (1986) IEEE Press, Piscataway, NJ.

    Google Scholar 

  15. P. Ciureanu, H. Gavrila, Magnetic heads for digital recording, Studies in electrical engineering 39 (1990), Elsevier, New York.

    Google Scholar 

  16. S.B. Luitjens, in High density digital recording, NATO ASI Series E, Applied Sciences 229 (1993) chap. 8, 217, K.H.J. Buschow, G. Long & F. Grandjean Eds, Kluwers Academic Publishers, Dordrecht.

    Google Scholar 

  17. T. Suzukj, MRS Bulletin 21 (1996) 42.

    Google Scholar 

  18. M. Mansuripur, The physical principles of magneto-optical recording (1995) Cambridge Univ. Press.

    Google Scholar 

  19. A.H. Eschenfelder, Magnetic bubble technology, Springer Series in Solid State Sciences, Vol. 14 (1980), Springer Verlag, Berlin-New York

    Google Scholar 

  20. D.F. Eagle, J.C. Mallinson, J. Appl. Phys. 38 (1967) 995.

    Article  ADS  Google Scholar 

  21. J.E. Knowles, IEEE Trans. Magn. Mag-16 (1980) 62.

    Article  ADS  Google Scholar 

  22. J.L. Dormann, D. Fiorani, E. Tronc, Adv. Chem. Phys. 98 (1997) 283.

    Article  Google Scholar 

  23. T.C. Arnoldussen, Film media, in Magnetic Recording Technology, 2nd ed. (1995) chap. 4, CD. Mee & E.D. Daniel Eds, McGraw-Hill, New York.

    Google Scholar 

  24. K.H.J. Buschow, in High density digital recording, NATO ASI Series E, Applied Sciences., 229 (1993) chap. 12, 355, K.H.J. Buschow, G. Long & F. Grandjean Eds, Kluwers Academic Publishers, Dordrecht.

    Google Scholar 

  25. O. Karlqvist, Trans. Royal Inst. Techn. Stockholm 86 (1954), article reproduit dans D.A. Thomson, J.S. Best, The Future of Magnetic Storage Technology, IBM Journal of Research and Development 44 (2000) 311. [2].

    Google Scholar 

  26. J.M. Fedeli, in High density digital recording, NATO ASI Series E, Applied Sciences, 229 (1993) chap. 9, 251. K.H.J. Buschow, G. Long & F. Grandjean Eds, Kluwers Academic Publishers, Dordrecht.

    Google Scholar 

  27. R.E. Jones, W. Nystrom, U.S. Patent 4 190 872 du 26 février 1980.

    Google Scholar 

  28. I. Elabd, IEEE Trans. Audio Au-11 (1963) 21.

    Article  Google Scholar 

  29. M. Williams, R. Comstock, AIP Conf. Proc. 1, No 5 (1971) 738, article reproduit dans D.A. Thomson. J.S. Best, The Future of Magnetic Storage Technology, IBM Journal of Research and Development 44 (2000) 311. [2].

    Google Scholar 

  30. K.E. Kuijk, W J. Van Gestel, F. W. Gorter, IEEE Trans. Magn. Mag-11 (1975) 1215.

    Article  ADS  Google Scholar 

  31. J.C. Mallinson, Magnetoresistive heads. Fundamentals and Applications (1996) Academic Press, New York-London.

    Google Scholar 

  32. Bharat Bhushan, in High density digital recording, NATO ASI Series E, Applied Sciences, 229 (1993) chap. 10, 281, K.HJ. Buschow, G. Long & F. Grandjean Eds, Kluwers Academic Publishers, Dordrecht.

    Google Scholar 

  33. C.D. Mee, E.D. Daniel, Magnetic recording (1987) McGraw-Hill, New York.

    Google Scholar 

  34. A.S. Hoagland, J.E. Monson, Digital magnetic recording, 2nd ed. (1991) John Wiley & Sons, New York.

    Google Scholar 

  35. J.J.M. Ruigrok, Short wavelength magnetic recording (1990) Elsevier, New York.

    Google Scholar 

  36. J.C. Mallinson, The foundation of magnetic recording (1987) Academic Press, New York-London.

    Google Scholar 

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Peuzin, JC. (2005). Principles of magnetic recording. In: du Trémolet de Lacheisserie, É., Gignoux, D., Schlenker, M. (eds) Magnetism. Springer, New York, NY. https://doi.org/10.1007/978-0-387-23063-4_7

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  • DOI: https://doi.org/10.1007/978-0-387-23063-4_7

  • Publisher Name: Springer, New York, NY

  • Print ISBN: 978-0-387-23000-9

  • Online ISBN: 978-0-387-23063-4

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