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Spin-valve giant magnetoresistance films with antiferromagnetic PtPdMn
被引:8
作者:
Anderson, GW
Huai, YM
Miloslavsky, L
Qian, CX
Feng, Y
机构:
[1] Read Rite Corp, Spin Valve Mat Proc, Fremont, CA 94539 USA
[2] Veeco Instruments Inc, PVD Syst, Orangeburg, NY 10962 USA
关键词:
D O I:
10.1063/1.370277
中图分类号:
O59 [应用物理学];
学科分类号:
摘要:
The antiferromagnetic alloy Pt20Pd30Mn50 has demonstrated a high exchange coupling field to a coupled NiFe film as well as high corrosion resistance, making it a promising candidate for use as the pinning layer of a spin valve. In this work we have investigated the magnetic and structural properties of spin-valve films exchange biased by CoFe/PtPdMn as compared to CoFe/IrMn spin valves. A spin-valve film structure of Ta50 Angstrom/NiFe50 Angstrom/CoFe20 Angstrom/Cu28 Angstrom/CoFe22 Angstrom/PtPdMn300 Angstrom/Ta50 Angstrom annealed at 250 degrees C for 10 h showed a giant magnetoresistance of 6.5% with an exchange field of 680 Oe. The blocking temperature of this film is about 350 degrees C, compared to 250 degrees C for IrMn based spin valves. The remnant blocking temperature was also measured, and showed that for PtPdMn spin valves the exchange field was constant up to a temperature of 300 degrees C, in contrast to 180 degrees C for an IrMn spin valve. Structural ordering of the PtPdMn in a face-centered-tetragonal (fct) phase after annealing has been observed using x-ray diffraction and transmission electron microscopy. The x-ray diffraction data exhibits a strong face-centered-cubic (111) and fct (111) out-of-plane orientation for as-deposited and annealed samples. Transmission electron micrographs show a smooth interface between the PtPdMn and CoFe layers, columnar growth structure, and fct ordering of the PtPdMn. (C) 1999 American Institute of Physics. [S0021-8979(99)73508-5].
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页码:6109 / 6111
页数:3
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