具有长程相互作用的量子多体系统的非平衡动力学

IF 23.9 1区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY
Nicolò Defenu , Alessio Lerose , Silvia Pappalardi
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引用次数: 0

摘要

近十年来,原子、分子和光学平台的实验进展激发了人们对许多长程相互作用粒子的量子相干动力学的强烈而广泛的兴趣。这些系统突出的集体特性使其能够产生新的非平衡现象,而这些现象在具有局部相互作用的传统量子系统中是无法找到对应物的。这一领域的大部分理论工作要么侧重于变程相互作用尾部对局部相互作用物理的影响,要么依赖于基于全对全无限程相互作用相反极限的均值场描述。在本报告中,我们对该领域的最新进展进行了系统而有机的回顾。我们以无序的相互作用量子自旋晶格为原型,介绍了一种介于少体均场物理和准局部相互作用的多体物理之间的多功能理论形式主义。这种形式主义使我们能够将这两种状态联系起来,既提供了正式的定量工具,又提供了基本的物理直觉。我们将利用这一统一框架来回顾过去十年的若干发现,包括量子关联的奇特非弹道扩散、纠缠动力学的反直觉减速、热化和平衡的抑制、穿越临界时缺陷的反常扩展、动态相变以及由周期性驱动稳定的真正非平衡相。本报告的风格偏向于教学,这使得没有相关经验的读者也能阅读。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Out-of-equilibrium dynamics of quantum many-body systems with long-range interactions

Experimental progress in atomic, molecular, and optical platforms in the last decade has stimulated strong and broad interest in the quantum coherent dynamics of many long-range interacting particles. The prominent collective character of these systems enables novel non-equilibrium phenomena with no counterpart in conventional quantum systems with local interactions. Much of the theory work in this area either focussed on the impact of variable-range interaction tails on the physics of local interactions or relied on mean-field-like descriptions based on the opposite limit of all-to-all infinite-range interactions. In this Report, we present a systematic and organic review of recent advances in the field. Working with prototypical interacting quantum spin lattices without disorder, our presentation hinges upon a versatile theoretical formalism that interpolates between the few-body mean-field physics and the many-body physics of quasi-local interactions. Such a formalism allows us to connect these two regimes, providing both a formal quantitative tool and basic physical intuition. We leverage this unifying framework to review several findings of the last decade, including the peculiar non-ballistic spreading of quantum correlations, counter-intuitive slowdown of entanglement dynamics, suppression of thermalization and equilibration, anomalous scaling of defects upon traversing criticality, dynamical phase transitions, and genuinely non-equilibrium phases stabilized by periodic driving. The style of this Report is on the pedagogical side, which makes it accessible to readers without previous experience in the subject matter.

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来源期刊
Physics Reports
Physics Reports 物理-物理:综合
CiteScore
56.10
自引率
0.70%
发文量
102
审稿时长
9.1 weeks
期刊介绍: Physics Reports keeps the active physicist up-to-date on developments in a wide range of topics by publishing timely reviews which are more extensive than just literature surveys but normally less than a full monograph. Each report deals with one specific subject and is generally published in a separate volume. These reviews are specialist in nature but contain enough introductory material to make the main points intelligible to a non-specialist. The reader will not only be able to distinguish important developments and trends in physics but will also find a sufficient number of references to the original literature.
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