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首页> 外文期刊>Physical review letters >Nonequilibrium Kondo model: Crossover from weak to strong coupling
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Nonequilibrium Kondo model: Crossover from weak to strong coupling

机译:非平衡近藤模型:从弱耦合到强耦合的转换

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We analyze the nonequilibrium Kondo model at finite voltage and temperature by using a new formulation of the real-time renormalization group method with the Laplace variable as the flow parameter. We evaluate the energy-dependent spin relaxation rate and nonlinear conductance, and derive an approximate form for the universal line shape for the latter in the whole crossover regime from weak to strong coupling. The results are shown to agree well with exact methods in equilibrium, Fermi-liquid theory, weak-coupling expansions, and recent experiments. For the transient spin dynamics we find a universal exponential decay in the long-time limit along with a truncation-dependent pre-exponential power law. For multichannel models a pure power-law decay typical for non-Fermi-liquid behavior is predicted.
机译:我们使用拉普拉斯变量作为流量参数的实时重归一化群方法的新公式,分析了在有限电压和温度下的非平衡近藤模型。我们评估了与能量有关的自旋弛豫率和非线性电导,并得出了在从弱到强耦合的整个分频范围内后者的通用线形的近似形式。结果表明,该方法与平衡,费米液体理论,弱耦合扩展和最新实验的精确方法相吻合。对于瞬态自旋动力学,我们发现长时间限制中的通用指数衰减以及与截断相关的前指数幂定律。对于多通道模型,可以预测非费米液体行为的典型纯幂律衰减。

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