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Renormalization group transport theory for open quantum systems: Charge fluctuations in multilevel quantum dots in and out of equilibrium

机译:开放量子系统的重归一化群输运理论:平衡态内外的多能级量子点中的电荷涨落

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摘要

We present the real-time renormalization group (RTRG) method as a method to describe the stationary state current through generic multilevel quantum dots in nonequilibrium. The employed approach consists of a very rudimentary approximation for the renormalization group (RG) equations which neglects all vertex corrections while it provides a means to compute the effective dot Liouvillian self-consistently. Being based on a weak-coupling expansion in the tunneling between dot and reservoirs, the RTRG approach turns out to reliably describe charge fluctuations in and out of equilibrium for arbitrary coupling strength, even at zero temperature. We confirm this in the linear response regime with a benchmark against highly accurate numerical renormalization group data in the exemplary case of three-level quantum dots. For small to intermediate bias voltages and weak Coulomb interactions, we find an excellent agreement between RTRG and functional renormalization group data, which can be expected to be accurate in this regime. As a consequence, we advertise the presented RTRG approach as an efficient and versatile tool to describe charge fluctuations in quantum dot systems.
机译:我们提出了实时重归一化组(RTRG)方法,该方法通过非平衡中的通用多级量子点描述稳态电流。所采用的方法包括对重整化组(RG)方程的非常基本的近似,该方程忽略了所有顶点校正,同时提供了一种自洽地计算有效点Liouvillian的方法。 RTRG方法基于点与储层之间隧穿中的弱耦合扩展,结果证明即使在零温度下,对于任意耦合强度,也可以可靠地描述电荷平衡中和非平衡中的电荷波动。我们在线性响应机制中以针对三级量子点的示例情况下的高精度数值重归一化组数据为基准来确认这一点。对于小到中等偏置电压和弱库仑相互作用,我们发现RTRG与功能重整化组数据之间有很好的一致性,可以预期在这种情况下它是准确的。因此,我们宣传提出的RTRG方法是一种描述量子点系统中电荷波动的有效且通用的工具。

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  • 来源
    《Physical review》 |2019年第20期|205142.1-205142.17|共17页
  • 作者单位

    Rhein Westfal TH Aachen, Inst Theorie Stat Phys, D-52056 Aachen, Germany|JARA Fundamentals Future Informat Technol, Julich, Germany;

    Ludwigs Maximilians Univ Munchen, Arnold Sommerfeld Ctr Theoret Phys, Phys Dept, Theresienstr 37, D-80333 Munich, Germany|Ludwigs Maximilians Univ Munchen, Ctr NanoSci, Theresienstr 37, D-80333 Munich, Germany;

    Rhein Westfal TH Aachen, Inst Theorie Stat Phys, D-52056 Aachen, Germany|JARA Fundamentals Future Informat Technol, Julich, Germany;

    Rhein Westfal TH Aachen, Inst Theorie Stat Phys, D-52056 Aachen, Germany|JARA Fundamentals Future Informat Technol, Julich, Germany;

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