Ionic Conductivity of Quasi-One-Dimensional Ionic Conductor KTiOPO_4 (KTP) Single Crystal at High Pressure : Condensed Matter: Structure, etc.
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概要
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The pressure dependence of ionic conductivity was carried out in a single crystal of KTiOPO_4 (KTP) to 2 GPa at room temperature in the frequency range from 100 Hz to 10 MHz. The samples were pressed by a piston-cylinder-type high-pressure vessel, and the pressure was monitored by using a manganin gage. The ionic conductivity decreased nonlinearly and monotonously with increasing pressure. The decrease of ionic conductivity would be mainly due to the increase of an activation energy for the ionic conduction. The increase of the activation energy is due to the decrease of the size of"bottle necks"which are formed by oxygen atoms in the framework.
- 社団法人日本物理学会の論文
- 2000-07-15
著者
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Sugiyama Hiroshi
Department of Chemistry, Graduate School of Science Kyoto University
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Miyamoto A
Institute Of Laser Engineering Department Of Electrical Engineering Osaka University
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Takasaki S
Himeji Inst. Technol. Kamigohri
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Sasaki Takahiko
Department Of Material Science Himeji Institute Of Technology
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Itoh Fumitake
Department of Electronic Engineering, Faculty of Engineering, Gunma University
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Sasaki T
Division Of Materials Physics Department Of Physical Science Graduate School Of Engineering Science
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Sasaki T
Institute For Materials Research Tohoku University
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Sasaoka T
Hitachi Cable Ltd. Ibaraki
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Sasaki Takanori
Department Of Applied Physics Tohoku University
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FURUSAWA Shin-ichi
Department of Electric Engineering, Faculty of Engineering, Gunma University
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MIYAMOTO Akio
Institute of Laser Engineering, Department of Electrical Engineering, Osaka University
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SASAKI Takatomo
Institute of Laser Engineering, Department of Electrical Engineering, Osaka University
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Sasaki Takatomo
Institute Of Laser Engineering Department Of Electrical Engineering Osaka University
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Takasaki Satoshi
Department Of Material Science Faculty Of Science Himeji Institute Of Technology
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Itoh Fumitake
Department Of Electric Engineering Faculty Of Engineering Gunma University
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Furusawa S
Gunma Univ. Kiryu
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Furusawa Shin-ichi
Department Of Electric Engineering Faculty Of Engineering Gunma University
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Sugiyama Hiroshi
Department Of Chemistry Graduate School Of Science Kyoto University
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Sugiyama Hiroshi
Department Of Chemistry Faculty Of Science
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Sugiyama Hiroshi
Department Of Electric Engineering Faculty Of Engineering Gunma University
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Sasaki Takatomo
Institute for Solid State Physics, The University of Tokyo
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Sasaki Tetsuya
Institute for Materials Research, Tohoku University
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