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一维量子晶格系统中的混合态动力学:一种含时超算符重整化算法。

Mixed-state dynamics in one-dimensional quantum lattice systems: a time-dependent superoperator renormalization algorithm.

作者信息

Zwolak Michael, Vidal Guifré

机构信息

Institute for Quantum Information, California Institute of Technology, Pasadena, California 91125, USA.

出版信息

Phys Rev Lett. 2004 Nov 12;93(20):207205. doi: 10.1103/PhysRevLett.93.207205.

Abstract

We present an algorithm to study mixed-state dynamics in one-dimensional quantum lattice systems. The algorithm can be used, e.g., to construct thermal states or to simulate real time evolution given by a generic master equation. Its two main ingredients are (i) a superoperator renormalization scheme to efficiently describe the state of the system and (ii) the time evolving block decimation technique to efficiently update the state during a time evolution. The computational cost of a simulation increases significantly with the amount of correlations between subsystems, but it otherwise depends only linearly on the system size. We present simulations involving quantum spins and fermions in one spatial dimension.

摘要

我们提出了一种用于研究一维量子晶格系统中混合态动力学的算法。该算法可用于,例如,构建热态或模拟由一般主方程给出的实时演化。它的两个主要组成部分是:(i)一种超算子重整化方案,用于有效描述系统的状态;(ii)时间演化块抽取技术,用于在时间演化过程中有效更新状态。模拟的计算成本会随着子系统之间的关联量显著增加,但在其他方面仅线性依赖于系统大小。我们展示了涉及一维空间中量子自旋和费米子的模拟。

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