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S. Varaprasad for PCAR measurements, Dr. N. Hase, Dr. M. Nakatani, Dr. S. Li, Dr. S. Goripati and Dr. T. Furubayashi for the CPP-GMR experiments, Dr. S. Kasai and Dr. S. Mitani for the LSV experiment and Dr. T. Koganezawa for the synchrotron radiation experiment. This work was partially supported by PREST-JST, the Grant-in-Aid for Scientific Research (A) (#22246091), (B)(#20360322) and IDEMA-ASTC. References 1. 2. 3. 4. 5. 6. 7. 8. 9. N. M. Broto, A. , Giant magnetoresistance of (001)Fe/(001)Cr magnetic superlattices, Phys.

Lett. 93, 082508 (2008). 24. T. X. Liu, Y. , 37th Annual Meeting of Magntic Society of Japan, 3pC-8 (2013). 25. M. Takagishi, K. Yamada, H. , Magnetoresistance ratio and resistance area design of CPP-MR film for 2–5 Tb/in2 read sensors, IEEE Trans. Magn. 46, 2086 (2010). 26. C. Reilly, W. Park, R. , Perpendicular giant magnetoresistance of Co91 Fe9 ∕Cu exchange-biased spin-valves: Further evidence for a unified picture, J. Magn. Magn. Mater. 195, L269 (1999). 27. M. Covington, M. AlHajDarwich, Y.

AlHajDarwich, Y. , Current-induced magnetization dynamics in current perpendicular to the plane spin valves, Phys. Rev. B 69, 184406 (2004). Spintronics Materials with High-Spin Polarization 39 28. R. J. I. , Dual current-perpendicular-to-plane giant magnetoresistive sensors for magnetic recording heads with reduced sensitivity to spin-torque-induced noise, J. Appl. Phys. 99, 08S305 (2006). 29. T. Valet and A. Fert, Theory of the perpendicular magnetoresistance in magnetic multilayers, Phys. Rev.

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