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On the Thermodynamics of a Two-Dimensional Electron Gas with Non-Parabolic Dispersion

机译:具有非抛物线色散的二维电子气的热力学

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A thermodynamic density of states, electron density in the subband and the entropy of the gas as function of the temperature and the total two-dimensional electron density are studied. Semiconductor conduction band dispersion is described by the simplified Kane model. Numerical simulation shows that with an increase in the total electron concentration, thermodynamic density of states at low temperatures changes abruptly and smoothes jumps at high temperatures. This change manifests itself in the peculiar thermodynamic characteristics. The results are used to interpret existing experimental data.
机译:研究了状态的热力学密度,子带中的电子密度以及气体的熵随温度和总二维电子密度的变化。半导体导带色散由简化的Kane模型描述。数值模拟表明,随着总电子浓度的增加,低温状态的热力学密度突然改变,并且在高温下平滑跳跃。这种变化表现为独特的热力学特性。结果用于解释现有的实验数据。

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