J4 ›› 2014, Vol. 31 ›› Issue (6): 753-758.

• 半导体光电 • 上一篇    

极性晶体中磁极化子声子色散效应

冀文慧,杨洪涛,胡文弢   

  1. 集宁师范学院物理系, 内蒙古 乌兰察布 012000
  • 收稿日期:2014-06-03 修回日期:2014-06-23 出版日期:2014-11-28 发布日期:2014-11-17
  • 通讯作者: 冀文慧(1982—)内蒙古乌兰察布市人,讲师,主要从事凝聚态光学性质方面的研究 E-mail:jiwenhui2000@aliyun.com
  • 基金资助:
    内蒙古自治区高等学校科学研究项目(NJZY12248);内蒙古自治区高等学校科学研究项目(NJZY11287)

Effect of phonon dispersion on magnetopolaron in a polar crystal

JI Wen-hui, YANG Hong-tao, HU Wen-tao   

  1. Department of Physics, Inner Mongolia Jining Normal University, Wulanchabu 012000, China
  • Received:2014-06-03 Revised:2014-06-23 Published:2014-11-28 Online:2014-11-17

摘要: 利用线性组合算符和幺正变换相结合的方法,研究了声子色散对极性晶体中磁极化子性质的影响.计及纵光学(LO)声子色散,在抛物近似下导出了极性晶体中磁极化子基态能量、自陷能和基态Landau能随声子色散系数、回旋共振频率和电子-纵光学声子耦合强度的变化关系.数值计算结果表明基态能量随声子色散系数、电子-纵光学声子耦合强度的增大而减小.自陷能随声子色散系数和电子-纵光学声子耦合强度的增大而增大.基态Landau能随电子-纵光学声子耦合强度的增大先增大到最大值后又减小,随声子色散系数的增大而增大.

关键词: 光电子学, 磁极化子, 线性组合算符, 声子色散

Abstract: The influence of the phonon dispersion on the properties of the magnetopolaron in a polar crystal was studied by using the linear combination operator and unitary transformation method. Taking account of the longitudinal optical (LO) phonons dispersion in a parabolic approximation, the ground state energy, the self-trapping energy and the Landau energy of the magnetopolaron in a polar crystal as a function of the coefficient of the phonon dispersion, the cyclotron resonance frequency and the electron-LO-phonon coupling constant were obtained. Numerical calculation results show that the ground state energy decreases with increasing the coefficient of the phonon dispersion and the electron-LO-phonon coupling constant. The self-trapping energy increases with increasing the coefficient of phonon dispersion and the electron-LO-phonon coupling constant. The ground state Landau energy increases to a maximum and then fall with increasing the electron-LO-phonon coupling constant, and increases with increasing the coefficient of phonon dispersion.

Key words: optoelectronics, magnetopolaron, linear combination operator, phonon dispersion

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