论文标题

来自非线性电子偶联的光学泵送金属动力学中的声子诱导的疾病

Phonon-induced disorder in dynamics of optically pumped metals from non-linear electron-phonon coupling

论文作者

Sous, John, Kloss, Benedikt, Kennes, Dante M., Reichman, David R., Millis, Andrew J.

论文摘要

光激发的物质的非平衡动力学可能会产生不存在于平衡中的电子相,例如激光诱导的高过度 - 温度 - 温度超导性。在这里,我们通过空间均匀的泵在初始时间模拟了在初始时间驱动的金属的动力学,从而激发了偶极运动振动模式,这些振动模式与电子相对四倍。我们详细研究电子和振动可观测物及其相干的演变。我们提供了加强局部电子相关性的证据,包括双重占用率,并伴随着空间结构的快速丧失,我们将其解释为动力学中新兴有效障碍的标志。在没有猝灭随机性的情况下,这种有效疾病在系统发展向相关的电子 - phonon长期状态时会主导电子动力学,这可能解释了为什么未观察到瞬时超导性。在此研究的泵送电子 - 音波系统由非线性耦合控制,比与平衡相关的线性耦合模型表现出更为实质性的动力响应,从而提出了针对异常平衡相的新方式的途径。我们的结果为了解振动耦合电子的当前泵探针实验中的相关动力学提供了一个基础,突出了相干性演变的重要性,并证明泵送的电子波系统提供了一种近似实现的最近提出的在转换系统中动态诱导的动态障碍的方案的方法。

The non-equilibrium dynamics of matter excited by light may produce electronic phases that do not exist in equilibrium, such as laser-induced high-transition-temperature superconductivity. Here we simulate the dynamics of a metal driven at initial time $t=0$ by a spatially uniform pump that excites dipole-active vibrational modes which couple quadratically to electrons. We study in detail the evolution of electronic and vibrational observables and their coherences. We provide evidence for enhancement of local electronic correlations, including double occupancy, accompanied by rapid loss of spatial structure, which we interpret as a signature of emergent effective disorder in the dynamics. This effective disorder, which arises in absence of quenched randomness, dominates the electronic dynamics as the system evolves towards a correlated electron-phonon long-time state, possibly explaining why transient superconductivity is not observed. The pumped electron-phonon systems studied here, which are governed by non-linear coupling, exhibit a much more substantial dynamical response than linearly coupled models relevant in equilibrium, thus presenting a pathway to new modalities for out-of-equilibrium phases. Our results provide a basis within which to understand correlation dynamics in current pump-probe experiments of vibrationally coupled electrons, highlight the importance of the evolution of phase coherence, and demonstrate that pumped electron-phonon systems provide a means of approximately realizing recently proposed scenarios of dynamically induced disorder in translation-invariant systems.

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