Co-existence of biquadratic and unidirectional anisotropy in IrMn/Co/FeO/sub x//Co films

Samples of Ta/Cu 3 nm/IrMn 8 nm/Co/sub (FM1)/ 1 nm/FeO/sub x/ 1.6 nm/Co/sub (FM2)/ 2.5 nm/Ta were prepared using sputtering deposition. The exchange biasing direction of the films were set by postannealing in vacuum at 200 /spl deg/C for 15 min at a presence of 1 kOe. Hysteresis loops measured paral...

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Bibliographic Details
Published inINTERMAG Asia 2005. Digests of the IEEE International Magnetics Conference, 2005 pp. 2039 - 2040
Main Authors Chih-Huang Lai, Chih-Ta Shen
Format Conference Proceeding
LanguageEnglish
Published IEEE 2005
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Summary:Samples of Ta/Cu 3 nm/IrMn 8 nm/Co/sub (FM1)/ 1 nm/FeO/sub x/ 1.6 nm/Co/sub (FM2)/ 2.5 nm/Ta were prepared using sputtering deposition. The exchange biasing direction of the films were set by postannealing in vacuum at 200 /spl deg/C for 15 min at a presence of 1 kOe. Hysteresis loops measured parallel (0/spl deg/) and perpendicular (90/spl deg/) to the annealing field show the existence of unidirectional anisotropy and uniaxial anisotropy, respectively. The presence of the uniaxial anisotropy at 90/spl deg/ induced a local energy minumum at 90/spl deg/. The effects of local energy minimum at 90/spl deg/ are more pronounced in the R-H loops measured at 20/spl deg/ where the coexistence of the two anisotropies results to an extra MR minimum near the zero field. With increasing positive field, the magnetization of the free layer is switched to the appllied field direction, accompanying the increase in MR. Further increase of the positive fields lead to the re-appearance of the MR minimum due to the alignment of the magnetization of FM2 and free layer.
ISBN:9780780390096
0780390091
ISSN:2150-4598
2150-4601
DOI:10.1109/INTMAG.2005.1464458