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Impact of stochastic accelerations on dopant segregation in microgravity semiconductor crystal growth

机译:随机加速度对微重力半导体晶体生长中掺杂剂偏析的影响

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摘要

The residual accelerations that are typically present in microgravity environments (g-jitters) contain a broad spectrum of frequencies and may be modeled as stochastic processes. Their effects on the quality of the semiconductor crystals are analyzed here quantitatively with direct numerical simulation. In particular we focus on the dopant segregation effects due to thermosolutal convection as a function of the parameters characterizing the statistics of the stochastic force. The numerical simulation is specified for material parameters of two doped semiconductors (Ge:Ga and GaAs:Se) in realistic conditions of actual microgravity environments. As a general result, we show that the segregation response is strongly dominated by the low-frequency part of the g-jitter spectrum. In addition, we develop a simplified model of the problem based on linear response theory that projects the dynamics into very few effective modes. The model captures remarkably well the segregation effects for an arbitrary time-dependent acceleration of small amplitude, while it implies an enormous reduction of computer demands. This model could be helpful to analyze results from real accelerometric signals and also as a predictive tool for experimental design.
机译:通常在微重力环境(g抖动)中存在的残余加速度包含很宽的频谱范围,并且可以建模为随机过程。本文通过直接数值模拟定量分析了它们对半导体晶体质量的影响。特别地,我们关注由于热固对流引起的掺杂剂偏析效应,该效应是表征随机力统计数据的参数的函数。在实际微重力环境的实际条件下,对两种掺杂半导体(Ge:Ga和GaAs:Se)的材料参数进行了数值模拟。作为一般结果,我们显示出分离响应在很大程度上由g抖动频谱的低频部分决定。此外,我们基于线性响应理论开发了一个简化的问题模型,该模型将动力学投影为很少的有效模式。对于任意随时间变化的小幅度加速,该模型都能很好地捕获偏析效果,同时它也意味着极大地减少了计算机需求。该模型可能有助于分析来自真实加速度信号的结果,也可以作为实验设计的预测工具。

著录项

  • 来源
    《Journal of Crystal Growth》 |2012年第1期|p.88-100|共13页
  • 作者单位

    Departament de Quimica Fisica i Inorganica, Universitat Rovira i Virgili, Tarragona, Spain,IEEC lnstitut d'Estudis Espadals de Catalunya, Barcelona, Spain;

    Departament de Estructura i Constituents de la Materia, Universitat de Barcelona, Barcelona, Spain;

    Departament de Fisica Aplicada, Universitat Politectnica de Catalunya, Barcelona, Spain,IEEC lnstitut d'Estudis Espadals de Catalunya, Barcelona, Spain;

    Departament de Estructura i Constituents de la Materia, Universitat de Barcelona, Barcelona, Spain,IEEC lnstitut d'Estudis Espadals de Catalunya, Barcelona, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    A1. computer simulation; A1. convection; A1. directional solidification; A1. segregation; A2. microgravity conditions;

    机译:A1。计算机模拟;A1。对流;A1。定向凝固A1。隔离A2。微重力条件;

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