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作为多体局域化探测手段的量子互信息

Quantum Mutual Information as a Probe for Many-Body Localization.

作者信息

De Tomasi Giuseppe, Bera Soumya, Bardarson Jens H, Pollmann Frank

机构信息

Max-Planck-Institut für Physik komplexer Systeme, Nöthnitzer Straße 38, 01187-Dresden, Germany.

出版信息

Phys Rev Lett. 2017 Jan 6;118(1):016804. doi: 10.1103/PhysRevLett.118.016804. Epub 2017 Jan 5.

Abstract

We demonstrate that the quantum mutual information (QMI) is a useful probe to study many-body localization (MBL). First, we focus on the detection of a metal-insulator transition for two different models, the noninteracting Aubry-André-Harper model and the spinless fermionic disordered Hubbard chain. We find that the QMI in the localized phase decays exponentially with the distance between the regions traced out, allowing us to define a correlation length, which converges to the localization length in the case of one particle. Second, we show how the QMI can be used as a dynamical indicator to distinguish an Anderson insulator phase from a MBL phase. By studying the spread of the QMI after a global quench from a random product state, we show that the QMI does not spread in the Anderson insulator phase but grows logarithmically in time in the MBL phase.

摘要

我们证明,量子互信息(QMI)是研究多体局域化(MBL)的一种有用探针。首先,我们聚焦于两种不同模型中金属-绝缘体转变的检测,即非相互作用的奥布里-安德烈-哈珀模型和无自旋费米子无序哈伯德链。我们发现,在局域相中,QMI随所追踪区域之间的距离呈指数衰减,这使我们能够定义一个关联长度,在单粒子情况下该关联长度收敛于局域长度。其次,我们展示了QMI如何用作区分安德森绝缘体相和MBL相的动力学指标。通过研究从随机乘积态进行全局猝灭后QMI的扩散情况,我们表明QMI在安德森绝缘体相中不会扩散,但在MBL相中随时间呈对数增长。

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