论文标题
孤立量子系统的无碰撞前态的动力学相变:理论和实验
Dynamical phase transitions in the collisionless pre-thermal states of isolated quantum systems: theory and experiments
论文作者
论文摘要
我们概述了从平衡中淬灭的孤立量子系统中动态相变的概念。我们专注于以顺序参数为特征的非平衡过渡,该转变具有定性不同的时间行为在某个动态临界点的两侧。目前,动态相变的主要理解为在无弹性碰撞无法热化系统的状态下长寿命的预霉现象。后者使动力学能够取代阶段,这些阶段明确打破了详细的平衡,因此不能包含传统的热力学。我们的演讲涵盖了冷原子和冷凝物质系统。我们重新审视了表现出热线前DPT的大量平台,这些平台在一定极限上可以在理论上易于处理,例如,大量粒子,大量的顺序参数组件或大空间维度。我们探索的系统包括具有集体交互的量子磁铁,$ ϕ^4 $量子场理论和费米 - 哈伯德模型。一节致力于对凝结物质和AMO系统中DPT进行实验探索的部分,连接了各种各样的理论模型。
We overview the concept of dynamical phase transitions in isolated quantum systems quenched out of equilibrium. We focus on non-equilibrium transitions characterized by an order parameter, which features qualitatively distinct temporal behaviour on the two sides of a certain dynamical critical point. Dynamical phase transitions are currently mostly understood as long-lived prethermal phenomena in a regime where inelastic collisions are incapable to thermalize the system. The latter enables the dynamics to substain phases that explicitly break detailed balance and therefore cannot be encompassed by traditional thermodynamics. Our presentation covers both cold atoms as well as condensed matter systems. We revisit a broad plethora of platforms exhibiting pre-thermal DPTs, which become theoretically tractable in a certain limit, such as for a large number of particles, large number of order parameter components, or large spatial dimension. The systems we explore include, among others, quantum magnets with collective interactions, $ϕ^4$ quantum field theories, and Fermi-Hubbard models. A section dedicated to experimental explorations of DPTs in condensed matter and AMO systems connects this large variety of theoretical models.