Pressure-induced Crossover from Variable Range Hopping to Electron-Electron Interaction in the Organic Conductor (DOET)_2BF_4(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
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概要
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This paper reports the pressure effect on resistivity in the quasi two-dimensional (2D) organic conductor (DOET)_2BF_4 with orientational disorder of BF_4 anions. At ambient pressure, the resistivity shows metal-insulator transition at 80K and 2D variable range hopping (VRH) conduction below 80K. The insulating behavior is suppressed by applying pressure and the temperature dependence of the resistivity shows the crossover from the 2D VRH to the logarithmic divergence as applied pressure increases. From the observation of the positive magnetoresistance, the logarithmic divergence of the resistivity is not attributed to the Anderson localization, but to the effect of the electron-electron interaction. This crossover is simply understood in terms of the screening effect on the random potential by increase of bandwidth due to applied pressure. It is found that a value of sheet conductance at low temperatures above 8 kbar, where the insulating state is almost suppressed, approaches to the minimum conductivity for a metallic state, σ_<min>=e^2/h=1/(25.8kΩ), first proposed by Mott.
- 社団法人日本物理学会の論文
- 2006-02-15
著者
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Kobayashi K
Department Of Pure And Applied Sciences Graduate School Of Arts And Sciences The University Of Tokyo
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Kume K
Tokyo Metropolitan Univ. Tokyo
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Kume Kiyoshi
Division Of Gastroenterology Tohoku University Graduate School Of Medicine
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Yamada Junichi
Graduate School Of Material Science University Of Hyogo
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KIKUCHI Koichi
Department of Chemistry, Graduate School of Science, Tokyo Metropolitan University
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Murata Keizo
Department of Material Science,Faculty of Science,Osaka City University
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YASUZUKA Syuma
Department of Applied Physics, Hokkaido University
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Yamada Jun-ichi
Graduate School Of Material Sci. Univ. Of Hyogo
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Murata Keizo
Department Of Material Science Graduate School Of Science Osaka City University
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Yasuzuka Syuma
Division Of Molecular Materials Science Graduate School Of Science Osaka City University
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Yasuzuka Syuma
Department Of Applied Physics Hokkaido University:(present Address)department Of Molecular Materials
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Kikuchi K
Department Of Chemistry Tokyo Metropolitan University
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Kikuchi Koichi
Department Of Chemistry Tokyo Metropolitan University
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Kikuchi Kazuo
Department Of Electrical Engineering Nagoya University
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Kume K
Department Of Physics Tokyo Metropolitan University
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FUJIMOTO Tsutomu
Department of Applied Chemistry, Faculty of Engineering, Kyushu Institute of Technology
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Murata K
Division Of Molecular Materials Science Graduate School Of Science Osaka City University
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SHIMOTORI Masahiro
Department of Material Science, Graduate School of Science, Osaka City University
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YAMADA Junichi
Department of Material Science, Graduate School of Material Science, University of Hyogo
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MATSUTANI Katsuhiro
Tokuyama Soda Co. Ltd.
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Kikuchi K
Tokyo Gas Co. Ltd. Yokohama Jpn
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Yamada J
Himeji Inst. Technol. Hyogo
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Yamada Junichi
Department Of Material Science Graduate School Of Material Science University Of Hyogo
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Kajimura Koji
Electrotechnical Laboratory Tsukuba Research Center
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Shimotori Masahiro
Department Of Material Science Graduate School Of Science Osaka City University
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Fujimoto Tsutomu
Division Of Molecular Materials Science Graduate School Of Science Osaka City University
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Fujimoto Tsutomu
Department Of Applied Chemistry Faculty Of Engineering Kyushu Institute Of Technology
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Murata Keizo
Department Of Material Science Graduate School Of Science Osaka City Uneversity
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Murata Keizo
Department Of Material Science Faculty Of Science Osaka City University
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Yasuzuka Syuma
Department Of Applied Physics Hokkaido University
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