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1. 河北科技师范学院, 数理系,河北 秦皇岛,066004
2. 内蒙古民族大学, 物理与电子信息学院, 内蒙古, 通辽, 028043
收稿日期:2006-08-25,
修回日期:2006-11-24,
纸质出版日期:2007-07-20
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赵翠兰, 王国胜, 丁朝华, 肖景林. 光学极化子性质对耦合强度和磁场的依赖性[J]. 发光学报, 2007,28(4): 485-488
ZHAO Cui-lan, WANG Guo-sheng, DING Zhao-hua, XIAO Jing-lin. The Dependence of the Properties of Optical Polaron on Coupling Strength and Magnetic Field[J]. Chinese Journal of Luminescence, 2007,28(4): 485-488
应用线性组合算符和幺正变换方法
研究磁场和耦合强度对光学极化子性质的影响。数值计算表明:当电子接近晶体表面时
光学极化子的振动频率、基态能量和第一激发能仅与磁场有关
且随磁场强度的增强而增大;当电子远离晶体表面时
基态能量和第一激发能与磁场强度和耦合参数均有关
且随磁场强度和耦合参数的增加而增加。
A great deal of work on study of polaron properties in semiconductor surface and interface was performed
since Ibach carried out low-energy electron diffraction experiments on ZnO and other semiconductor surface.Huybrechts proposed a linear combination operator method
by which the dependence of internal excited state properties of polaron on coupling strength was discussed.Kandmir
et al
.studied the properties of two-dimension magnetopolaron by using bound Landau state method.MuKhopadhyay
et al
.calculated polar correction of the first excited state of electron in parabolic quantum dot for different values of the electron-phonon coupling by using LLP method.Others also investigated the many relations between the properties of polaron and coupling strength.We discussed the dependence of the properties of optical polaron on coupling strength and magnetic field in this paper.The varied relation of ground state energy
and the first excited energy of optical polaron with coupling strength and magnetic field was derived by using the linear combination operator and unitary transformation methods.The numerical calculation indicates that the vibration frequency increase with increasing coupling parametert and magnetic field strength
because interaction between electron and crystal vibration falls and vibration increases with increasing coupling parameter and interaction between electron and magnetic field increases with increasing magnetic field strength.The numerical calculation also shows that the ground state energy and the first excited energy both increase with increasing coupling parameter and magnetic field strength
since interaction energy between electron and crystal vibration increase with increasing coupling parameter and interaction energy between electron and magnetic field increase with increasing magnetic field strength.
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