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Bloch oscillation, dynamical localization, and optical probing of electron gases in quantum-dot superlattices in high electric fields

机译:强电场中量子点超晶格中电子气的Bloch振荡,动态定位和光学探测

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摘要

In this paper, we present numerical results for steady-state and time-dependent currents as well as for a long-time average current in strong nonlinear dc and ac electric fields for an electron gas in a one-dimensional (1D) quantum-dot superlattice. A microscopic model is employed for the scattering of electrons by phonons and static impurities by means of the Boltzmann equation method. The dc results are favorably compared with recent exact aTialytic results based on a relaxation-time model for electron-phonon scattering. Our results demonstrate the different roles played by elastic and inelastic scattering on the damped Bloch oscillations as well as the nonlinear steady-state current and their opposite roles on the damped dynamical localization. We also find a suppression of dynamical localization by strong Bloch oscillations and features in the Esaki-Tsu peaks in the presence of an ac electric field when electron scattering is included. On the basis of a nonequi-librium electron distribution obtained from the Boltzmann equation, a self-consistent-field approach is employed to establish a general formalism for the optical response of current-driven electrons in both the linear and nonlinear regimes to a 1D quantum-dot superlattice. The dc-field dependences of both the peak energy and peak strength in the absoiption spectrum for a 1D quantum-dot superlattice are calculated, from which we find: (1) both the peak energy and its strength are significantly reduced with increasing dc electric field; and (2) the peak energy and peak strength are anomalously enhanced by raising the temperature for the nonlinear transport of electrons when a strong dc electric field is applied.
机译:在本文中,我们提供了一维(1D)量子点中电子气的稳态和随时间变化的电流以及在强非线性dc和ac电场中长期平均电流的数值结果超晶格。通过玻尔兹曼方程方法,采用微观模型对电子通过声子和静态杂质的散射进行了分析。 dc结果与最近基于电子声子散射弛豫时间模型的精确aTialytic结果相比具有优势。我们的结果证明了弹性和非弹性散射在阻尼Bloch振荡以及非线性稳态电流中所起的不同作用,以及它们在阻尼动态局部化中的相反作用。我们还发现,当包含电子散射时,在存在交流电场的情况下,由于强烈的Bloch振荡和Esaki-Tsu峰中的特征而抑制了动态局部化。基于从玻尔兹曼方程获得的非平衡库电子分布,采用自洽场方法建立了线性和非线性状态下电流驱动电子对一维量子的光学响应的​​一般形式。点超晶格。计算一维量子点超晶格在吸收光谱中峰值能量和峰值强度的dc场相关性,从中我们发现:(1)峰值能量及其强度都随着dc电场的增加而显着降低。 ; (2)当施加强直流电场时,通过提高电子的非线性传输温度,异常地增加了峰值能量和峰值强度。

著录项

  • 来源
    《Physical review》 |2009年第15期|527-545|共19页
  • 作者单位

    Air Force Research Laboratory, Space Vehicles Directorate, Kirtland Air Force Base, New Mexico 87117, USA;

    Sandia National Laboratories, Albuquerque, New Mexico 87185, USA;

    Department of Physics and Astronomy, Hunter College, City University of New York, 695 Park Avenue, New York, New York 10065, USA;

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

    high-field and nonlinear effects;

    机译:高场和非线性效应;

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