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从经典到量子基布尔-祖雷克标度的转变。

Crossover from Classical to Quantum Kibble-Zurek Scaling.

作者信息

Silvi Pietro, Morigi Giovanna, Calarco Tommaso, Montangero Simone

机构信息

Institute for Complex Quantum Systems and Center for Integrated Quantum Science and Technologies, Universität Ulm, D-89069 Ulm, Germany.

Theoretische Physik, Universität des Saarlandes, D-66123 Saarbrücken, Germany.

出版信息

Phys Rev Lett. 2016 Jun 3;116(22):225701. doi: 10.1103/PhysRevLett.116.225701. Epub 2016 Jun 2.

Abstract

The Kibble-Zurek (KZ) hypothesis identifies the relevant time scales in out-of-equilibrium dynamics of critical systems employing concepts valid at equilibrium: It predicts the scaling of the defect formation immediately after quenches across classical and quantum phase transitions as a function of the quench speed. Here, we study the crossover between the scaling dictated by a slow quench, which is ruled by the critical properties of the quantum phase transition, and the excitations due to a faster quench, where the dynamics is often well described by the classical model. We estimate the value of the quench rate that separates the two regimes and support our argument using numerical simulations of the out-of-equilibrium many-body dynamics. For the specific case of a ϕ^{4} model we demonstrate that the two regimes exhibit two different power-law scalings, which are in agreement with the KZ theory when applied to the quantum and classical cases. This result contributes to extending the prediction power of the Kibble-Zurek mechanism and to providing insight into recent experimental observations in systems of cold atoms and ions.

摘要

基布尔-祖雷克(KZ)假说利用在平衡态有效的概念,确定了临界系统非平衡动力学中的相关时间尺度:它预测了在跨越经典和量子相变的猝灭之后,缺陷形成的标度关系是猝灭速度的函数。在此,我们研究了由缓慢猝灭所决定的标度关系(由量子相变的临界性质所支配)与较快猝灭所产生的激发之间的交叉过渡,在较快猝灭的情况下,动力学通常可以用经典模型很好地描述。我们估计了区分这两种情况的猝灭速率值,并通过非平衡多体动力学的数值模拟来支持我们的论点。对于ϕ⁴模型的具体情况,我们证明这两种情况表现出两种不同的幂律标度关系,当应用于量子和经典情况时,这与KZ理论一致。这一结果有助于扩展基布尔-祖雷克机制的预测能力,并为深入了解冷原子和离子系统中的近期实验观测提供帮助。

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