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Relaxation of nonequilibrium populations after a pump: the breaking of Mathiessen's rule

机译:抽水后非平衡种群的松弛:打破了麦蒂森法则

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From the early days of many-body physics, it was realized that the self-energy governs the relaxation or lifetime of the retarded Green's function. So it seems reasonable to directly extend those results into the nonequilibrium domain. But experiments and calculations of the response of quantum materials to a pump show that the relationship between the relaxation and the self-energy only holds in special cases. Experimentally, the decay time for a population to relax back to equilibrium and the linewidth measured in a linear-response angle-resolved photoemission spectroscopy differ by large amounts. Theoretically, aside from the weak-coupling regime where the relationship holds, one also finds deviations and additionally one sees violations of Mathiessen's rule. In this work, we examine whether looking at an effective transport relaxation time helps to analyze the decay times of excited populations as they relax back to equilibrium. We conclude that it may do a little better, but it has a fitting parameter for the overall scale which must be determined.
机译:从多体物理学的早期开始,人们就认识到,自能控制着格林功能的松弛或寿命。因此将这些结果直接扩展到非平衡域似乎是合理的。但是对量子材料对泵的响应的实验和计算表明,弛豫和自能之间的关系仅在特殊情况下成立。实验上,种群恢复到平衡状态所需的衰减时间与线性响应角分辨光电子能谱中测得的线宽相差很大。从理论上讲,除了存在这种关系的弱耦合制度之外,人们还发现了偏差,另外有人看到了对马蒂森法则的违反。在这项工作中,我们研究了寻找有效的传输弛豫时间是否有助于分析激发种群恢复到平衡时的衰减时间。我们得出的结论是,它可能做得更好,但是它具有必须确定的适用于总体规模的参数。

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