非有序半导体的高频传导特性,温度上升

М.А. Ормонт, Н.В. Валенко
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引用次数: 0

摘要

研究了无序半导体高频电导率随温度升高与杂质带电子跳变输运有关的特性。通过对近似,表明在低温(T≈1k)下,在太赫兹频率范围内,电导率的实部从几乎线性到二次频率依赖的转变(交叉)可以随着温度的升高而保持,这是由具有可变范围(频率依赖)跳变距离的弛豫电导率到具有固定范围跳变距离的无声子电导率的转变引起的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Особенности поведения высокочастотной проводимости неупорядоченных полупроводников с ростом температуры
The peculiarities of the behavior of high-frequency conductivity of disordered semiconductors associated with the hopping transport of electrons in the impurity band with increasing temperature were studied. Via the pair approximation, it is shown that the transition (crossover) observed at low temperatures (T ≈ 1 K) in the terahertz frequency range from an almost linear to a quadratic frequency dependence of the real part of conductivity can stay on with increasing temperature and be caused by the transition from relaxation conductivity with a variable-range (frequency-dependent) hopping distance to phononless conductivity with a fixed- range hopping distance.
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