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On the possibility of self-trapping transition of acoustic polarons in two dimensions 被引量:11
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作者 侯俊华 梁希侠 《Chinese Physics B》 SCIE EI CAS CSCD 2007年第10期3059-3066,共8页
A 2D electron-longitudinal-acoustic-phonon interaction Hamiltonian is derived and used to calculate the groundstate energy of the acoustic polarons in two dimensions. The numerical results for the ground-state energy ... A 2D electron-longitudinal-acoustic-phonon interaction Hamiltonian is derived and used to calculate the groundstate energy of the acoustic polarons in two dimensions. The numerical results for the ground-state energy of the acoustic polarons in two and three dimensions are obtained. The 3D results agree with those obtained by using the Feynman path-integral approach. It is found that the critical coupling constant of the transition from the quasifree state to the self-trapped state in the 2D case is much smaller than in the 3D case for a given cutoff wave-vector. The theory has been used to judge the possibility of the self-trapping for several real materials. The results indicate that the self-trappings of the electrons in AlN and the holes in AlN and GaN are expected to be observed in 2D systems. 展开更多
关键词 acoustic polarons self trapping two-dimensional electron-phonon interaction
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Optimization of the gain in Yb^(3+)-doped cubic laser crystals of 99.99% purity 被引量:2
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作者 Georges Boulon Yannick Guyot Akira Yoshikawa 《Journal of Rare Earths》 SCIE EI CAS CSCD 2009年第4期616-618,共3页
This was an outlook on the prediction of the infrared laser potentiality from concentration dependences of the 2F5/2 experimental decay time in Yb3+-doped solid-state crystals mainly on cubic crystals with 99.99% pur... This was an outlook on the prediction of the infrared laser potentiality from concentration dependences of the 2F5/2 experimental decay time in Yb3+-doped solid-state crystals mainly on cubic crystals with 99.99% purity which could be extended to laser ceramics of the same composition. 展开更多
关键词 YTTERBIUM FLUORIDE GARNET sesquioxide laser crystals concentration quenching self trapping lifetime
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