High Magnetic Field Transport Properties of η-Mo_4O_<11> Crystals
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概要
- 論文の詳細を見る
Magnetoresistance and Hall effect have been measured at 4.2 K using a hybrid magnet up to 26 T for several crystals of quasi-two-dimensional η-Mo_4O_<11> that has a charge-density-wave (CDW) induced nested multiple carrier band structure. The magnetoresistance is exceptionally large and the Hall resistivity shows a unique magnetic field dependence. We have confirmed the existence of characteristic hysteresis phenomena in both quantities between up- and down-sweeps of an applied magnetic field, as well as Shubnikov-de Haas (SdH) oscillations. The hysteresis effects can be related with a magnetic field dependent irreversible process for the CDW formation and destruction. These transport properties are found to be sample-dependent.
- 社団法人日本物理学会の論文
- 1993-05-15
著者
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Kido Giyuu
Institute for Materials Research, Tohoku University
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Nakagawa Yasuaki
Institute for Materials Research, Tohoku University
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Kido G
National Inst. For Materials Sci. Ibaraki
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Kido Giyuu
Institute For Materials Research Tohoku University
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Kido Giyuu
Nanomaerials Laboratory National Institute For Materials Science
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Koyano M
Hiroshima Univ. Higashi‐hiroshima
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Koyano Mikio
Department Of Materials Science Faculty Of Science Hiroshima University
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Koyano M
Japan Advanced Inst. Sci. And Technol. Ishikawa
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Hara Yoshiaki
Department Of Ophthalmology Nara Medical University
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Hara Yoshiaki
Department Of Materials Science Faculty Of Science Hiroshima University
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Nakagawa Y
Tohoku Univ. Sendai
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Nakagawa Y
Himeji Inst. Technol. Ako‐gun
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Nakagawa Y
Institute For Materials Research Tohoku University
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Nakagawa Yasuaki
Department Of Electronics Tohoku Institute Of Technology
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INOUE Masasi
Department of Materials Science,Faculty of Science,Hiroshima University
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OHARA Shigeo
Department of Electrical and Computer Engineering, Nagoya Institute of Technology
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Nakagawa Yasuaki
Institute For Material Research Tohoku University
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Hara Yoshiaki
Department Of Biology Faculty Of Science Yamagata University
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Ohara S
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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Inoue Masasi
Department Of Applied Physics Fukui University
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Kido G
Institute For Materials Research Tohoku University
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Nakagawa Yasuaki
The Research Institute For Iron Steel And Other Metals Tohoku University
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Inoue M
Riken Brain Sci. Inst. Saitama
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Inoueu Masato
Laboratory For Mathematical Neuroscience Riken Brain Science Institute : Department Of Otolaryngolog
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INOUE Masasi
Department of Material Science, Faculty of Science, Hiroshima University
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