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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Coulomb drag between quantum wires: A nonequilibrium many-body approach
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Coulomb drag between quantum wires: A nonequilibrium many-body approach

机译:Quallomb在量子线之间拖动:非Quibribrium很多机身方法

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摘要

We present a real-space theoretical formalism and its numerical implementation for investigating nonequilibrium quantum Coulomb drag between parallel two-terminal transport structures in quasi-one-dimension. In addition to the Coulomb interaction and the finite external potential bias, our formalism takes into account the effects of impurity disorder. The theory is formulated in the nonequilibrium Green's function formalism, with the long-range Coulomb interaction treated at the many-body GW approximation level and the disorder-average carried out at the coherent potential approximation (CPA) level. The coupled GW and CPA equations are solved self-consistently so that the fundamental conservation laws are ensured. The effects related to the electron-hole symmetry in the Coulomb drag physics have been generalized to the nonlinear transport regime. A set of symmetry-induced relations linking physical quantities with the particle distribution were established on generic footing and, remarkably, they are found robust against uniformly distributed impurities. As an application, the theoretical formalism is employed to analyze the Coulomb drag transport physics in quasi-one-dimensional systems. The dependencies of the drag current on external bias, chemical potential, temperature, and the system sizes are predicted.
机译:我们介绍了一个真实空间的理论形式主义及其数值实现,用于研究准一维的并联两端运输结构之间的非醌量子库仑阻力。除了库仑相互作用和有限的外部电位偏差之外,我们的形式主义还考虑了杂质障碍的影响。该理论在非Quilibium的功能形式主义中配制,具有在许多身体GW近似水平的远程库仑相互作用,并且在相干电位近似(CPA)水平上进行的紊乱平均值。耦合的GW和CPA方程自始终解决,以确保基本保护法。与库仑阻力物理学中的电子空穴对称相关的效果一直普遍化为非线性传输制度。在通用基础上建立了将物理量与颗粒分布联系起来的一组对称性诱导的关系,并且显着地,对均匀分布的杂质发现它们具有稳健性。作为申请,使用理论形式主义来分析准一维系统中的库仑阻力物理学。预测了外部偏压,化学电位,温度和系统尺寸的拖动电流的依赖关系。

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