On the relationship of magnetocrystalline anisotropy and stoichiometry in epitaxial L10 CoPt (001) and FePt (001) thin films -: art. no. 033904

被引:186
作者
Barmak, K [1 ]
Kim, J
Lewis, LH
Coffey, KR
Toney, MF
Kellock, AJ
Thiele, JU
机构
[1] Carnegie Mellon Univ, Ctr Data Storage Syst, Pittsburgh, PA 15213 USA
[2] Carnegie Mellon Univ, Dept Mat Sci & Engn, Pittsburgh, PA 15213 USA
[3] Brookhaven Natl Lab, Dept Mat Sci, Upton, NY 11973 USA
[4] Univ Cent Florida, Orlando, FL 32816 USA
[5] Stanford Linear Accelerator Ctr, Menlo Pk, CA 94025 USA
[6] IBM Corp, Almaden Res Ctr, San Jose, CA 95120 USA
[7] San Jose Res Ctr, Hitachi Global Storage Technol, San Jose, CA 95120 USA
基金
美国国家科学基金会;
关键词
D O I
10.1063/1.1991968
中图分类号
O59 [应用物理学];
学科分类号
摘要
Two series of epitaxial CoPt and FePt films, with nominal thicknesses of 42 or 50 nm, were prepared by sputtering onto single-crystal MgO(001) substrates in order to investigate the chemical ordering and the resultant magnetic properties as a function of alloy composition. In the first series, the film composition was kept constant, while the substrate temperature was increased from 144 to 704 degrees C. In the second series the substrate temperature was kept constant at 704 degrees C for CoPt and 620 degrees C for FePt, while the alloy stoichiometry was varied in the nominal range of 40-60-at. % Co(Fe). Film compositions and thicknesses were measured via Rutherford backscattering spectrometry. The lattice and long-range order parameter for the L1(0) phase were obtained for both sets of films using x-ray diffraction. The room-temperature magnetocrystalline anisotropy constants were determined for a subset of the films using torque magnetometry. The order parameter was found to increase with increasing temperature, with ordering occurring more readily in FePt when compared with CoPt. A perpendicular anisotropy developed in CoPt for substrate temperatures above 534 degrees C and in FePt above 321 degrees C. The structure and width of the magnetic domains in CoPt and FePt, as seen by magnetic force microscopy, also demonstrated an increase in magnetic anisotropy with increasing temperature. For the films deposited at the highest temperatures (704 degrees C for CoPt and 620 degrees C for FePt), the order parameter reached a maximum near the equiatomic composition, whereas the magnetocrystalline anisotropy increased as the concentration of Co or Fe was increased from below to slightly above the equiatomic composition. It is concluded that nonstoichiometric L1(0) CoPt and FePt, with a slight excess of Co or Fe, are preferable for applications requiring the highest anisotropies. (c) 2005 American Institute of Physics.
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页数:10
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