Information Technology Reference
In-Depth Information
implantation in a bonding region of tip portion to selectively deactivate magnetic
sensitivity thereof's. US patent 6,483,672. Nov 19, 2002.
12. S. Khizroev, B. W. Crue, and D. Litvinov, inventors. Seagate Technology, assignee.
Method for forming a perpendicular recording read/write head. U.S. patent 6,513,228.
Feb 4 2003.
13. S. Khizroev, W. Crue, and D. Litvinov, inventors. Seagate Technology, assignee.
Perpendicular magnetic recording head with write pole which reduces flux antenna
effect. US patent 6,646,827. Nov 11, 2003.
14. S. Khizroev, Y. Hijazi, N. Amos, R. Chomko, and D. Litvinov. Considerations in the
design of three-dimensional and multi-level magnetic recording. Journal of Applied
Physics, 100: p 63907, 2006.
15. S. Khizroev, inventor. Three-dimensional magnetic memory and/or recording device.
US patent application 20060028766, filed Feb 9, 2006; 11/197,377, filed Aug 4, 2005,
with provisional patent; 60/598,645, filed Aug 4, 2004, disclosure filed Feb 21, 2003.
16. S. H. Charap, P. L. Lu, and Y. He. Thermal stability of recorded information at high
densities. IEEE Transactions on Magnetics, 33(1): pp 978-983, 1997.
17. Robert M. White. Quantum Theory of Magnetism, 3rd ed. Springer, 2006.
18. J. Bernoulli. Ars Conjectandi: Usum et Applicationem Praecedentis Doctrinae in
Civilibus, Moralibus et Oeconomicis. 1713, Chapter 4. (Translated into English by
Oscar Sheynin.)
19. G. R. Grimmett and D. R. Stirzaker. Probability and Random Processes, 2nd ed,
Oxford: Clarendon Press, 1992.
20. G. D Danilatos and G. C Lewis. Integrated electron optical/differential pumping/
imaging signal detection system for an environmental scanning electron microscope.
US 4,823,006 (PDF version) (1989-4-18).
21. G. D. Danilatos. Foundations of environmental scanning electron microscopy.
Advances in Electronics and Electron Physics, 71 pp 109-250, 1988.
22. P. L. Lu and S. H. Charap. High density magnetic recording media design and identi-
fication: susceptibility to thermal decay. IEEE Transactions on Magnetics, 31 p 2767, 1995.
23. Y. K. Liu and M. H. Kryder. Thermally stable, soft FeXN thin films. Applied Physics
Letters, 77 p 426, 2000.
24. L. Pauling. The nature of metals. Pure and Applied Chemistry, 61(12): pp 2171-2174, 1989.
25. S. X. Wang, N. X. Sun, M. Yamaguchi, and S. Yabukami. Properties of a new soft
magnetic material. Nature, 407 pp 150-151, 2000.
26. M. Sostarich. Generalized Slatter-Pauling curve and the role of metalloids in Fe-based
amorphous alloys. Journal of Applied Physics, 67(9): pp 5793-5795, May 1, 1990.
27. F. Liu, K. Stoev, P. Luo, Y. Liu, Y. Chen, J. Chen, J. Wang, F. G. Shan, K. T. Kung,
M. Lederman, M. Krounbi, M. Re, A. Otsuki, and S. Hong. Perpendicular recording
heads for extremely high-density recording. IEEE Tranactions on Magnetics, 39(4): pp
1942-1948, 2003.
28. S. Iwasaki, Y. Nakamura, and K. Ouchi. Perpendicular magnetic recording with a
composite anisotropy film. IEEE Tranactions on Magnetics, 15(6): p 1456, 1979.
29. M. Mallary, A. Torabi, and M. Benakli. One terabit per square inch perpendicular
recording conceptual design. IEEE Transactions on Magnetics, 38(40): pp 1719-1724,
2002.
 
Search WWH ::




Custom Search