首页> 外文期刊>Physical Review, B. Condensed Matter >DIRECT CALCULATION OF THE TRANSPORT PROPERTIES OF DISORDERED ALAS/GAAS SUPERLATTICES FROM THE ELECTRONIC AND PHONON SPECTRA
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DIRECT CALCULATION OF THE TRANSPORT PROPERTIES OF DISORDERED ALAS/GAAS SUPERLATTICES FROM THE ELECTRONIC AND PHONON SPECTRA

机译:从电子和声子谱直接计算失配的ALAS / GAAS超晶格的传输性质

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We have calculated from first principles the recently measured electron and hole transport of disordered AlAs/GaAs superlattices, in which the individual layer thicknesses n,m,n',m',... of sequence (AlAs)(n)(GaAs)(m)(AlAs)(n),(GaAs)(m),... are 1, 2, or 3, selected at random with equal probabilities. First, the near-edge electronic states are calculated using a three-dimensional pseudopotential representation for a similar to 2000-ML cell. The results are then modeled by an effective-mass approximation, thus obtaining the electronic states in a wider energy range. All electronic states are found to be localized in the superlattice direction. Second, the phonon-assisted-hopping probabilities between different localized electronic states are calculated from first principles, including contributions of polar optical, acoustic deformation-potential, and acoustic piezoelectrical effects. Third, the master equation describing electron transport via phonon-assisted hopping is addressed using Monte Carlo simulations. The resulting transport properties versus temperature are analyzed according to dispersive transport theories, including the crossover from dispersive to equilibrium transport. A simple model for the photoluminescence process is proposed on the basis of the transport calculations. Our results agree qualitatively with recent experimental data. [References: 40]
机译:我们已经从第一性原理计算出了最近测得的无序AlAs / GaAs超晶格的电子和空穴传输,其中序列(AlAs)(n)(GaAs)的各个层厚度为n,m,n',m',... (m)(AlAs)(n),(GaAs)(m),...是1,2,或3,以相等的概率随机选择。首先,对于类似于2000-ML电池,使用三维伪电势表示来计算近边缘电子状态。然后通过有效质量近似对结果进行建模,从而获得更宽能量范围内的电子状态。发现所有电子状态都位于超晶格方向。其次,根据第一原理计算不同局部电子状态之间的声子辅助跳跃概率,包括极性光学,声变形势和声压电效应的贡献。第三,使用蒙特卡洛模拟法解决了描述通过声子辅助跳跃进行电子传输的主方程。根据色散传输理论,包括从色散传输到平衡传输的交叉,分析了所得的传输性质与温度的关系。在传输计算的基础上,提出了一种简单的光致发光过程模型。我们的结果在质量上与最近的实验数据一致。 [参考:40]

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