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非平衡XXZ链中的输运:电荷与电流的精确分布

Transport in Out-of-Equilibrium XXZ Chains: Exact Profiles of Charges and Currents.

作者信息

Bertini Bruno, Collura Mario, De Nardis Jacopo, Fagotti Maurizio

机构信息

SISSA and INFN, via Bonomea 265, 34136 Trieste, Italy.

The Rudolf Peierls Centre for Theoretical Physics, Oxford University, Oxford, OX1 3NP, United Kingdom.

出版信息

Phys Rev Lett. 2016 Nov 11;117(20):207201. doi: 10.1103/PhysRevLett.117.207201. Epub 2016 Nov 8.

Abstract

We consider the nonequilibrium time evolution of piecewise homogeneous states in the XXZ spin-1/2 chain, a paradigmatic example of an interacting integrable model. The initial state can be thought of as the result of joining chains with different global properties. Through dephasing, at late times, the state becomes locally equivalent to a stationary state which explicitly depends on position and time. We propose a kinetic theory of elementary excitations and derive a continuity equation which fully characterizes the thermodynamics of the model. We restrict ourselves to the gapless phase and consider cases where the chains are prepared: (1) at different temperatures, (2) in the ground state of two different models, and (3) in the "domain wall" state. We find excellent agreement (any discrepancy is within the numerical error) between theoretical predictions and numerical simulations of time evolution based on time-evolving block decimation algorithms. As a corollary, we unveil an exact expression for the expectation values of the charge currents in a generic stationary state.

摘要

我们考虑XXZ自旋-1/2链中分段均匀态的非平衡时间演化,这是一个相互作用可积模型的典型例子。初始状态可被视为连接具有不同全局性质的链的结果。通过退相,在较晚时间,该状态在局部上变得等同于一个明确依赖于位置和时间的稳态。我们提出了一种基本激发的动力学理论,并推导了一个完全表征该模型热力学的连续性方程。我们将自己限制在无隙相中,并考虑链的制备情况:(1) 在不同温度下,(2) 在两个不同模型的基态中,以及(3) 在“畴壁”状态下。我们发现理论预测与基于时间演化块抽取算法的时间演化数值模拟之间具有极佳的一致性(任何差异都在数值误差范围内)。作为一个推论,我们揭示了一般稳态下电荷电流期望值的精确表达式。

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