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Magneto-photon-phonon interaction in a parabolically confined quantum dot in the presence of high magnetic fields and intense terahertz radiation fields

机译:存在高磁场和太赫兹辐射场的情况下,抛物限制量子点中的磁光子相互作用

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摘要

We present a theoretical study on magneto-photon-phonon interaction in a parabolically confined quantum dot subjected simultaneously to static magnetic field and radiation field. A nonperturbative treatment for electron-photon interaction is proposed by solving analytically the time-dependent Schrodinger equation in which the magnetic field and the radiation field are included exactly. We employ the energy-balance equation approach on the basis of the Boltzmann equation to evaluate the energy transfer rate induced by optical transition events. It is found that for relatively low radiation levels, two peaks of the cyclotron resonance (CR) appear at two Kohn's frequencies ω±_, and the strength and the width of the CR increase with radiation intensity. The CR at ±+_ is more prominent than that at ±_-. When the radiation become intense, the splitting of the CR peaks can be observed and the splitting increases with radiation intensity. The physics reasons behind these interesting findings are discussed. This study is pertinent to the application of intense terahertz radiation sources such as free-electron lasers in the investigation into low-dimensional semiconductor systems.
机译:我们目前对抛物线形量子点中的磁光子相互作用进行理论研究,该量子点同时受到静磁场和辐射场的影响。通过解析求解时间相关的薛定inger方程,提出了一种非扰动的电子-光子相互作用的处理方法,该方程精确地包含了磁场和辐射场。我们在玻尔兹曼方程的基础上采用能量平衡方程方法来评估由光学跃迁事件引起的能量传输速率。发现对于相对较低的辐射水平,回旋加速器共振(CR)的两个峰值出现在两个科恩频率ω±_处,并且CR的强度和宽度随着辐射强度而增加。 ±+ _处的CR比±_-处的CR更突出。当辐射变强时,可以观察到CR峰的分裂,并且分裂随辐射强度的增加而增加。讨论了这些有趣发现背后的物理原因。这项研究与低维半导体系统研究中强太赫兹辐射源(如自由电子激光器)的应用有关。

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  • 来源
    《Physical review》 |2012年第4期|p.045307.1-045307.10|共10页
  • 作者

    W. Y.Wang; W. Xu;

  • 作者单位

    Key Laboratory of Materials Physics, Institute of Solid State Physics, Chinese Academy of Sciences, Hefei 230031, China;

    Separtment of Physics, Yunnan University, Kunming 650091, China Key Laboratory of Materials Physics, Institute of Solid State Physics, Chinese Academy of Sciences, Hefei 230031, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    quantum dots; magnetooptical effects;

    机译:量子点;磁光效应;

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