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一维和二维受限产生的非热态

Nonthermal States Arising from Confinement in One and Two Dimensions.

作者信息

James Andrew J A, Konik Robert M, Robinson Neil J

机构信息

London Centre for Nanotechnology, University College London, Gordon Street, London WC1H 0AH, United Kingdom.

School of Physical Sciences, The Open University, Milton Keynes, MK7 6AA, United Kingdom.

出版信息

Phys Rev Lett. 2019 Apr 5;122(13):130603. doi: 10.1103/PhysRevLett.122.130603.

Abstract

We show that confinement in the quantum Ising model leads to nonthermal eigenstates, in both continuum and lattice theories, in both one (1D) and two dimensions (2D). In the ordered phase, the presence of a confining longitudinal field leads to a profound restructuring of the excitation spectrum, with the low-energy two-particle continuum being replaced by discrete "meson" modes (linearly confined pairs of domain walls). These modes exist far into the spectrum and are atypical, in the sense that expectation values in the state with energy E do not agree with the microcanonical (thermal) ensemble prediction. Single meson states persist above the two-meson threshold due to a surprising lack of hybridization with the (n≥4)-domain wall continuum, a result that survives into the thermodynamic limit and that can be understood from analytical calculations. The presence of such states is revealed in anomalous postquench dynamics, such as the lack of a light cone, the suppression of the growth of entanglement entropy, and the absence of thermalization for some initial states. The nonthermal states are confined to the ordered phase-the disordered (paramagnetic) phase exhibits typical thermalization patterns in both 1D and 2D in the absence of integrability.

摘要

我们表明,在量子伊辛模型中,无论是在连续统理论还是晶格理论中,在一维(1D)和二维(2D)情况下,禁闭都会导致非热本征态。在有序相中,禁闭纵向场的存在导致激发谱的深刻重构,低能双粒子连续统被离散的“介子”模式(线性禁闭的畴壁对)所取代。这些模式在谱中存在很远,并且是非典型的,因为能量为E的态中的期望值与微正则(热)系综预测不一致。由于与(n≥4)畴壁连续统惊人地缺乏杂化,单介子态在双介子阈值之上持续存在,这一结果在热力学极限下仍然成立,并且可以从解析计算中理解。这种态的存在在反常淬火动力学中得以揭示,例如缺乏光锥、纠缠熵增长的抑制以及某些初始态的非热化。非热态局限于有序相——在不存在可积性的情况下,无序(顺磁)相在1D和2D中都表现出典型的热化模式。

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