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Effects of Space Charge on Mobility, Diffusion, and Recombination of Minority Carriers

机译:空间电荷对少数族裔载体的迁移,扩散和复合的影响

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摘要

A computer has been used to solve the coupled nonlinear equations, including space charge, that govern the motion of pulses of minority carriers in semiconductors. The advantages of using the computer are that one does not have to assume space‐charge neutrality, and one can treat drift, diffusion, and recombination simultaneously. The use of a mass action recombination law enabled the calculation of the decrease of life‐time with increase in pulse size. The electric field due to a pulse of uncompensated minority carriers was found to decay initially with the dielectric relaxation time, but a small field distortion was found to persist. This space charge influenced the mobility and diffusion of minority carriers. It was found that the decrease in mobility with large pulse size was less severe than predicted by the conventional theory based on charge neutrality. There were indications that diffusion, in the presence of space charge, was also less than that predicted by conventional theory.
机译:已经使用计算机来解决耦合的非线性方程,包括空间电荷,该非线性方程控制半导体中少数载流子的脉冲运动。使用计算机的优点是,不必承担空间电荷的中性,并且可以同时处理漂移,扩散和重组。通过使用质量作用复合定律,可以计算出随着脉冲大小的增加而减少的寿命。发现由于未补偿的少数载流子的脉冲而引起的电场最初随介电弛豫时间衰减,但发现仍存在较小的场失真。这种空间电荷影响少数载流子的迁移和扩散。已经发现,与大的脉冲大小相比,迁移率的降低没有如基于电荷中性的传统理论所预测的那样严重。有迹象表明,在存在空间电荷的情况下,扩散也小于传统理论所预测的扩散。

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  • 来源
    《Journal of Applied Physics 》 |1968年第3期| 共9页
  • 作者

    Scales J. L.; Ward A. L.;

  • 作者单位

    Harry Diamond Laboratories, Washington, D. C.;

  • 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
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