Dielectric Properties of Rubidium Nitrate under Hydrostatic Pressure
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概要
- 論文の詳細を見る
The relative rerntittivit>' (e,) and dielectric conductivity' (a) of RbN0s singlecrystals were measured at 1 MHz under hydrostatic pressures over its two phasetransformations; II-III (239'C at l aim) and 111-TV (164'C at ] aim). The valueof e, has a large peak at the II-III phase transition pressure, and 1/a, obeys theCurie-Weiss law on pressure in the phase III. This behavior of e, is elucidated bythe plaenontenological theory for the first order antiferroelectric phase transition.The II-III phase boundary was determined by the dielectric measurement. Atthe TV-III rhase transition tenarerattmre (I.), the chanses in e, and o seen in the e,vs. T and o vs. T curves get smaller with increasing applied-pressure. The behaviorof e, and o is explained by taking account of the rotation of NO.- ions beinghindered by the pressure.
- 社団法人日本物理学会の論文
- 1977-03-15
著者
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YASUDA Naohiko
Electrical and Electronic Engineering Department, Gifu University
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MIDORIKAWA Michio
Synthetic Cristal Research Laboratory,Faculty of Engineering,Nagoya University
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Shimizu H
Department Of Electronics And Computer Science Tokyo University Of Science
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Yasuda Naohiko
Department Of Electrical Engineering Faculty Of Engineering Gifu University
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SHIMIZU Hiroyasu
Electrical Engineering Department, Gifu University
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Fujimoto Sanji
Department Of Electrical Engineering Faculty Of Engineering Gifu University
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Fujimoto Sanji
Electrical Engineering Department Gifu University
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Kawabe Kazuo
Electrical Engineering Department Osaka University
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Shimizu Hiroyasu
Department Of Electrical Engineering Faculty Of Engineering Gifu University:the Institute Of Optics
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Shimizu Hiroyasu
Department Of Electronic Engineering Faculty Of Engineering Kobe University:department Of Electrical
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Takagi Yutaka
Synthetic Crystal Research Laboratory Faculty Of Engineering Nagaya University
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TSUBOI Shigemi
Electrical Engineering Department,Gifu University
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Tsuboi Shigemi
Electrical Engineering Department Gifu University
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Yasuda Naohiko
Electric and Information Department, Gifu University, Gifu 501-1193, Japan
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Takagi Yutaka
Synthetic Crystal Research Laboratory,Faculty of Engineering,Nagoya University
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