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Timescale separation solution of the Kadanoff-Baym equations for quantum transport in time-dependent fields

机译:时间依赖领域量子传输的Kadanoff-Baym方程的时间尺度分离溶液

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摘要

The interaction with time-dependent external fields, especially the interplay between time-dependent driving and quantum correlations, changes the familiar picture of electron transport through nanoscale systems. Although the exact solution of the problem of AC quantum transport of noninteracting electrons has been known for more than two decades, the treatment of correlated particles presents a significant theoretical challenge. In this paper, using the perturbative separation of fast electron tunneling and slow driving timescales, we developed a practical approach for time-dependent quantum transport with nonequilibrium Green's functions. The fast electronic dynamics is associated with relative time while the slow driving is related to the central time in the Green's functions. The ratio of characteristic electron tunneling time over the period of harmonic driving is used as a small parameter in the theory to obtain convergent time-derivative expansions of the Green's functions. This enables the algebraic solution of the Kadanoff-Baym equations in Wigner space. Consequently, we produced analytical expressions for dynamical corrections to advanced, retarded, and lesser Green's functions, as well as an improved expression for AC electric current. The method developed is applicable to the general case of multichannel electron transport through a correlated central region. The theory is applied to different transport scenarios: time-dependent transport through a driven single-resonant level is compared to exact results; and electron transport through a molecular junction described by the Holstein model with a time-oscillating voltage bias is also investigated.
机译:与时间相关的外部字段的交互,尤其是时间依赖的驱动和量子相关之间的相互作用,通过纳米级系统改变了电子传输的熟悉的图像。虽然非交互式电子的AC量子传输问题的确切解决方案已经已知超过二十年,但是相关粒子的处理具有显着的理论挑战。在本文中,使用快速电子隧道的扰动分离和慢速驾驶时间尺度,我们开发了一种具有非QuibiRibium函数的时间依赖量子传输的实用方法。快速电子动态与相对时间相关联,而慢速驱动与绿色功能中的中心时间相关。在谐波驱动周期内的特性电子隧道时间与理论中的小参数,以获得绿色函数的收敛时间衍生物扩展。这使得kadanoff-baym方程的代数解决方案在Wigner空间中。因此,我们生产用于先进,延迟和较小的绿色功能的动态校正的分析表达,以及交流电流的改进表达。该方法适用于通过相关的中心区域的多通道电子传输的一般情况。该理论应用于不同的传输场景:通过驱动的单谐振水平进行时间依赖的运输与精确的结果;还研究了通过具有时间振荡电压偏压的Holstein模型描述的通过分子结的电子传输。

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  • 来源
    《Physical review》 |2019年第24期|245423.1-245423.10|共10页
  • 作者单位

    James Cook Univ Coll Sci & Engn Townsville Qld 4811 Australia;

    James Cook Univ Coll Sci & Engn Townsville Qld 4811 Australia;

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  • 正文语种 eng
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