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Pair Correlation Functions of Coupled Electron-Hole Quantum Wire System at Finite Temperature

机译:对有限温度耦合电子 - 孔量子线系统的对相关性

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We theoretically investigate the intra- and inter-wire pair-correlation functions of the coupled electron-hole quantum wire system at finite temperature using the Random Phase Approximation and taking into account the mass-asymmetry of the charge carriers. Numerical results are presented for a good range of temperature, linear electron (hole) number density and inter-wire spacing at fixed wire width. Our calculations reveal that even at high number density, the holes in the hole wire are more strongly coupled (due to their heavier mass) than the electrons in the electron wire. Also, the inter-wire correlations build up in a monotonous manner with increasing temperature and decreasing inter-wire separation/particle number density.
机译:理论上,通过随机相位近似理论上地研究耦合电子空穴量子线系统的线耦合电子空穴量子线系统的内部对相关函数,并考虑到电荷载流子的质量不对称。呈现数值结果,用于良好的温度,线性电子(孔)数密度和固定线宽度的线间间隔。我们的计算表明,即使在高数密度下,孔线中的孔也比电子线中的电子更强烈地耦合(由于它们的质量较重)。而且,线间相关性以单调的方式增加,随着温度的增加和线轮间分离/粒子数密度。

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