Dynamical Properties of Protons in KH_2PO_4. I. : Proton Self-Trapped State and Its Incoherent Tunneling
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概要
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We investigate a proton-phonon system which represents the hydrogen-bonded ferroelectric crystals, in particular KH_2PO_4(KDP). As a plausible model, 'proton self-trapped state' model has been proposed. It is considered that, through the coupling to phonons, the proton on the hydrogen bond tends to be self-trapped at the shifted positions by breaking local symmetry of the surrounding atoms. The same coupling causes the quantum mechanical transition (phonon assisted tunneling) between the degenerated self-trapped states. At higher temperatures the transition is expected to become thermal activation type (incoherent tunneling). The results of neutron incoherent scattering study on KDP have been analyzed based on this model. The scattering function at T=150 K (T>T_c) shows satisfactory agreement with the observed spectrum by taking the relaxation time to cause incoherent tunneling to be 4×10^<-13> sec. The temperature dependence of the relaxation time is also investigated, which confirmed the validity of the thermal activation process with the activation energy of 37.1 meV.
- 社団法人日本物理学会の論文
- 1994-10-15
著者
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YAMADA Yasusada
Advanced Research Center for Science and Engineering,Waseda University
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Ikeda Susumu
Institute for High Energy Physics
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Yamada Yasusada
Advanced Institute Of Science And Engineering Waseda University
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