Magnetostatic Critical Point Phenomena of Single Crystalline Ni
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概要
- 論文の詳細を見る
The magnetostatic critical point phenomena of a single crystalline Ni (fcc) were first investigated using a computer controlled vibrating sample magnetometer in the uniformly applied bipolar fields from 0 to ±8 kOe. The magnetization M was measured along both of the easy axis [111] and hard axis [100]. A clear kink point locus was observed for the whole critical region in the extremely low fields measurement and the spontaneous magnetization and the critical point were directly obtained without data reduction for both easy and hard axes. The critical indices for the easy axis and hard axis werre obtained to be β=0.385±0.02 and 0.426±0.003, γ=1.302±0.003 and 1.19±0.01, and δ=4.27±0.01 and 3.80±0.01, respectively. The effect of the magnetocrystalline anisotropy on the critical indices is first found to be significantly large and not negligible in Ni. It was clearly shown that the Griffith's inequality is valid and the scaling low for the critical indices fails, and that all of the measured data for easy axis support the existence of the equation of states Ψ(H,M) but does not for the low field data at hard axis.
- 社団法人日本磁気学会の論文
- 1999-01-20
著者
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NISHIKAWA Takashi
Department of Physics,Division of Material Science,Nagoya University
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Tanaka Toshiro
Department of Cardiology, Chunichi Hospital
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Tanaka T
Department Of Materials Science And Engineering Ehime University
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MIYATANI Kazuo
Department of Materials Science and Engineering,Ehime University
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Miyatani Kazuo
Department Of Materials Science And Engineering Ehime University
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Nishikawa Takashi
Department Of Pharmaceutical Sciences Kyoritsu University Of Pharmacy
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Nishikawa Takashi
Department Of Materials Science And Engineering Ehime University
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Nishikawa Takashi
Department Of Clinical Neuroscience Osaka University Graduate School Of Medicine
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Nishikawa Takashi
Department of Biotechnology, Graduate School of Engineering, Osaka University
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