Spin-glass-like Behavior, Random Magnetic Anisotropy and Low-temperature Specific Heat of Amorphous Er-Cu, Er-Ni and Gd-Al Alloys
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概要
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Spin-glass-like behavior and the random magnetic anisotropy(RMA) for amorphous Er_xCu_<100-x> and Er_xNi_<100-x> alloys prepared by high-rate DC sputtering have been investigated. Their magnetic properties have been compared with those of amorphous Gd_xAl_<100-x> alloys without the random magnetic anisotropy. For these three amorphous alloy systems, the paramagnetic Curie temperature θ_p is positive, showing that the ferromagnetic exchange interactions are predominant, and they exhibit spin-glass-like behavior. The value of θ_p, the spin freezing temperature T_f, the local anisotropy constant D for the amorphous Er_xCu_<100-x> and Er_xNi_<100-x> alloys increase with the Er concentration. However, a steep decrease of θ_p occurs below about x=50 for the amorphous Er_xCu_<100-x>, suggesting a development of some antiferromagnetic exchange interaction. The concentration dependences of T_f and D also show a remarkable change around x=50 % Er. This means that the RMA becomes weaker, whereas the competition of the exchange interaction becomes stronger with decreasing Er concentration. For the amorphous Er_xNi_<100-x> alloys, the competition of ferromagnetic and antiferromagnetic interactions arising from the exchange fluctuations is negligibly small in contrast to that in the amorphous Er_xCu_<100-x> alloys. The RMA suppresses the ferromagnetic coupling, resulting in a spin-glass-like state. The magnetization per Er atom for the amorphous Er_xCu_<100-x> alloys exhibits maximum around 20 kOe, but that for the amorphous Er_xNi_<100-x> alloys becomes smaller with increasing Er concentration due to the increase in the RMA. The magnetic anisotropy energy K for the amorphous Er_xCu_<100-x> and Er_xNi_<100-x> alloys is one or two orders of magnitude larger than that of the amorphous Gd_xAl_<100-x> alloys which have no RMA. It should be noted that the temperature at which the magnetic specific heat of the amorphous Er_<33>Ni_<67> alloy reaches a maximum value coincides with the spin freezing temperature T_f determined by the AC magnetic susceptibility measurement. The crystal field splitting from J=15/2 into a Kramers doublet is considered to be caused by the RMA, accompanied by a Schottky-type specific heat with a linear temperature dependence. The magnetic entropy at T_f is estimated to be about 45 %〜60 % of the value expected theoretically, being much larger than that for crystalline dilute spin-glass systems. Moreover, the plot of the magnetic specific heat versus T^<3/2> is linear at low temperatures. Therefore, it is considered that a ferromagnetic-like spin-waves is excited, although its magnetic structure is not ferromagnetic but speromagnetic.random magnetic anisotropyRKKY interactionspin glassKramers doubletlow-temperature specific heatSchottky-type specific heat
- 東北大学の論文
- 1996-03-28
著者
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GOTO Tsuneaki
Institute for Solid State Physics,University of Tokyo
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Goto Tsuneaki
Institute For Solid State Physics The University Of Tokyo
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Goto T
Univ. Tokyo Chiba
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Goto Tsuneaki
Institute For Solid State Physics University
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FUKAMICHI Kazuaki
Department of Materials Science,Faculty of Engineering,Tohoku University
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Goto Tsuneaki
The Institute Of Solid State Physics Tokyo University
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Hattori Yasumasa
Department Of Materials Science Faculty Of Engineering Tohoku University:(present Address)sumitomo M
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Hattori Yukiya
Department Of Physics Tokyo Metropolitan University
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Fukamichi Kazuaki
Department Of Aterials Science Graduate School Of Engineering Tohoku University
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Hemmi Yasuo
Department Of Physics Kyoto University
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HATTORI Yukiya
Department of Physics, Tokyo Metropolitan University
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Hattori Yasumasa
Department of Materials Science, Faculty of Engineering, Tohoku University:(Present address)Sumitomo Metal Mining Co. Ltd.
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