量子纠缠
物理
半经典物理学
量子
热力学极限
准粒子
对偶(序理论)
可见的
量子动力学
量子力学
时间演化
经典力学
统计物理学
超导电性
数学
离散数学
作者
Alessio Lerose,Michael Sonner,Dmitry A. Abanin
出处
期刊:Physical review
[American Physical Society]
日期:2023-02-15
卷期号:107 (6)
被引量:16
标识
DOI:10.1103/physrevb.107.l060305
摘要
Describing nonequilibrium properties of quantum many-body systems is challenging due to high entanglement in the wave function. We describe the evolution of local observables via the influence matrix (IM), which encodes the effects of a many-body system as an environment for local subsystems. Recent works found that in many dynamical regimes the IM of an infinite system has low temporal entanglement and can be efficiently represented as a matrix-product state (MPS). Yet, direct iterative constructions of the IM encounter highly entangled intermediate states---a temporal entanglement barrier (TEB). We argue that TEB is ubiquitous, and elucidate its physical origin via a semiclassical quasiparticle picture that exactly captures the behavior of integrable spin chains. Further, we show that a TEB also arises in chaotic spin chains, which lack well-defined quasiparticles. Based on these insights, we formulate an alternative light-cone growth algorithm, which provably avoids TEB, thus providing an efficient construction of the thermodynamic-limit IM as a MPS. This work uncovers the origin of the efficiency of the IM approach for studying thermalization and transport.
科研通智能强力驱动
Strongly Powered by AbleSci AI