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首页> 外文期刊>Physical review letters >Green's Functions from Real-Time Bold-Line Monte Carlo Calculations: Spectral Properties of the Nonequilibrium Anderson Impurity Model
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Green's Functions from Real-Time Bold-Line Monte Carlo Calculations: Spectral Properties of the Nonequilibrium Anderson Impurity Model

机译:实时粗线蒙特卡洛计算中的格林函数:非平衡安德森杂质模型的光谱特性

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摘要

The nonequilibrium spectral properties of the Anderson impurity model with a chemical potential bias are investigated within a numerically exact real-time quantum Monte Carlo formalism. The two-time correlation function is computed in a form suitable for nonequilibrium dynamical mean field calculations. Additionally, the evolution of the model's spectral properties are simulated in an alternative representation, defined by a hypothetical but experimentally realizable weakly coupled auxiliary lead. The voltage splitting of the Kondo peak is confirmed and the dynamics of its formation after a coupling or gate quench are studied. This representation is shown to contain additional information about the dot's population dynamics. Further, we show that the voltage-dependent differential conductance gives a reasonable qualitative estimate of the equilibrium spectral function, but significant qualitative differences are found including incorrect trends and spurious temperature dependent effects.
机译:在精确的实时量子蒙特卡洛形式主义中研究了具有化学势偏置的安德森杂质模型的非平衡光谱性质。两次相关函数以适合于非平衡动态平均场计算的形式计算。此外,该模型的光谱特性的演化以一种备选表示形式进行了仿真,该备选表示由假设但可通过实验实现的弱耦合辅助引线定义。证实了近藤峰的电压分裂,并研究了耦合或栅极猝灭后其形成的动力学。该表示形式显示为包含有关点的填充动态的其他信息。此外,我们表明电压相关的差分电导率给出了平衡谱函数的合理定性估计,但是发现了明显的定性差异,包括不正确的趋势和虚假的温度依赖性效应。

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