Giant Magnetic Field Effect on Thermal Conductivity of Magnetic Multilayers, Cu/Co/Cu/Ni(Fe)
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概要
- 論文の詳細を見る
We present the first measurement of the field dependence of thermal conductivity in Cu/Co/Cu/Ni(Fe) multilayer film which shows large magnetoresistance of 50% at low temperatures. We found a large field dependence of similar magnitude in thermal conductivity with hysteresis, which suggests that the conduction electron scattering responsible for the giant magnetoresistance is mostly large angle and elastic in nature, at least at low temperatures.
- 社団法人日本物理学会の論文
- 1993-02-15
著者
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KOBAYASHI Yoshihiko
Department of Applied Physics and Chemistry, The University of Electro-Communications
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SATO Hideyuki
Department of Physics, Tokyo Metropolitan University
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SHINJO Teruya
Institute for Chemical Research,Kyoto University
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AOKI Yuji
Department of Physics, Tokyo Metropolitan University
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Aoki Yuji
Department Of Physics Faculty Of Science:department Of Physics Faculty Of Science Tokyo Metropolitan
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Aoki Yuji
Department Of Chemistry Faculty Of Science Gakushuin University
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Sugawara H
Faculty Of Integrated Arts And Sciences The University Of Tokushima
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Kudo Y
Environment & Analysis Technology Department Technical Support Center Sony Corporation
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Sugawara Hitoshi
Faculty Of Engineering Iwate University
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Kobayashi Yoshihiko
Department Of Applied Physics And Chemistry The University Of Electro-communications:(present Office
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Yamamoto Hidefumi
Functional Devices Research Laboratory, NEC Corporation
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Sakata H
Department Of Physics Tokyo Institute Of Technology
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Shinjo Teruya
Institute For Chemical Research Kyoto Universiry
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Yamamoto Hidefumi
Functional Devices Research Laboratories Nec Corporation
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Yamamoto Hidefumi
Functional Devices Research Laboratory Nec Corporation
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Sato Hideyuki
Department Of Cardiology Osaka University Graduate School Of Medicine
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Kobayashi Yoshihiko
Department Of Applied Physics And Chemistry The University Of Electro-communications
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Sato Hideyuki
Department Of Applied Chemistry Faculty Of Science And Technology Keio University
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