首页 | 本学科首页   官方微博 | 高级检索  
     

声子色散对量子点中弱耦合磁极化子性质的影响(英文)
引用本文:冀文慧,赵翠兰. 声子色散对量子点中弱耦合磁极化子性质的影响(英文)[J]. 原子与分子物理学报, 2007, 24(5): 1035-1040
作者姓名:冀文慧  赵翠兰
作者单位:内蒙古民族大学物理与机电学院,通辽,028043
基金项目:国家自然科学基金;内蒙古高等学校科研项目
摘    要:利用线性组合算符和幺正变换的方法,研究声子色散对磁场中抛物量子点弱耦合磁极化子性质的影响.计及LO声子色散,在抛物近似下导出了基态能量与量子点有效受限长度、声子色散系数、磁场强度以及耦合强度之间的关系.我们可以得到在弱耦合情况下抛物量子点中磁极化子的基态能量E0随量子点有效受限长度l0、电子声子耦合常数α和声子色散系数γ的增大而减小,随磁场回旋频率ωc增大而增大.自陷能Eotr随声子色散系数γ增大而增大.

关 键 词:量子点  磁极化子  基态  耦合强度  声子色散
文章编号:1000-0364(2007)05-1035-06
收稿时间:2005-11-13
修稿时间:2005-11-13

The influence of the phonon dispersion on the properties of weak-coupling magnetopolaron in a quantum dot
JI Wen-hui,ZHAO Cui-lan. The influence of the phonon dispersion on the properties of weak-coupling magnetopolaron in a quantum dot[J]. Journal of Atomic and Molecular Physics, 2007, 24(5): 1035-1040
Authors:JI Wen-hui  ZHAO Cui-lan
Affiliation:College of Physics and Electromechanics, Inner Mongolia University for Nationalities, Tongliao 028043, China
Abstract:With the use of linear-combination operator and unitary transformation method, the influence of the dispersion of phonons on the properties of weak-coupling magnetopolaron in a parabolic quantum dot is studied. Taking account of bulk LO phonons dispersion in a parabolic approximation, the ground state energy as a function of the effective confinement length, the coefficient of the phonon dispersion, the cyclotron-resonance frequency and the electron-phonon coupling constant are obtained. It is shown that in the electron-LO-phonon weak-coupling case, the ground state energy decreases with increasing the effective confinement length, the electron-LO-phonon coupling constant and the coefficient of the phonon dispersion; the ground state energy increases with increasing the cyclotron resonance frequency. The self-trapping energy becomes larger considering the influence of the phonon dispersion.
Keywords:quantum dot  magnetopolaron  ground state  electron-phonon coupling constant  phonon dispersion
本文献已被 CNKI 维普 万方数据 等数据库收录!
点击此处可从《原子与分子物理学报》浏览原始摘要信息
点击此处可从《原子与分子物理学报》下载全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号