The Microwave Study of Bottleneck Effect and Relaxation of Resonant Phonons Emitted from the Tunneling Li^+ Ion in KCl
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概要
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The microwave pulse excitation and subsequent relaxation of the tunneling Li" ionin KCI have been studied at 9.4 GHz, using the paraelectric resonance, the microwavesaturation recovery and the microwave double resonance (N/{DR) developed newly.From the MDR, the absorption between A.. - T.. in the );round state tunnelingquartet is expressed by a line with half-width of 0.6 GHz peaked at 8.5 GHz. Theenergy relaxation time T. depends on the thickness of specimen L and temperature Tas 7'.(msec):L(cm)- 7'(K). Abrupt decrease of T. is found when the specimen is im-mersed in He II. These data are explained in terms of the bottleneck effect of resonantphonon (RP) emitted from the microwave pumped system. The lifetime T,. of the RPis governed by its extinction at a two-level system on the surface with a rate of 0.01 /reflection. The relation T.,= T,. is derived after reducing the quartet to doublet.
- 社団法人日本物理学会の論文
- 1985-12-15
著者
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MORI Yuzo
Department of Precision Science and Technology, Osaka University
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Matsuoka M
Univ. Tokyo Tokyo Jpn
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Matsuoka Masao
Department Of Applied Physics Osaka City University:institute De Fisica Universitaria De Sao Paulo
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OHKURA Hiroshi
Department of Applied Physics,Osaka City University
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Nakagawa Satoru
Division Of Digestive And General Surgery Graduate School Of Medical And Dental Sciences Niigata Uni
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Nakagawa Satoru
Department Of Electrical And Electronic Engineering Tokyo Institute Of Technology
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Nakagawa Satoru
Department Of Chemistry Graduate School Of Science Nagoya University
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OHKURA Hiroshi
Graduate School of Science and Technology, Niigata University
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Mori Yuzo
Department Of Applied Physics Faculty Of Engineering Osaka City University
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Ohkura H
Osaka City Univ. Osaka
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Ohkura Hiroshi
Department Of Applied Physics Osaka City University
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Ohkura H
Okayama Univ. Science Okayama Jpn
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Ohkura Hiroshi
Graduate School Of Science And Technology Niigata University
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MATSUOKA Masao
Department of Applied Physics,Osaka City University:Institute de Fisica,Universitaria de Sao Paulo
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Mori Yuzo
Department of Applied Physics,Osaka City University
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