Role of quantum fluctuation in inducing ergodicity in the spin glass phase and its effect in quantum annealing.

Sudip Mukherjee
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引用次数: 2

Abstract

We review the numerical studies on the critical behaviour of the quantum Sherrington-Kirkpatrick (SK) spin glass model, which indicate that a quantum critical behaviour is observed up to a low but non-zero value of temperature. We revisit the numerical investigations on the spin glass order parameter distributions, which identify a low temperature along with high transverse field spin glass phase where the order parameter distribution becomes a delta function in the thermodynamic limit indicating the restoration of replica symmetry and ergodic nature of the system. In the remaining spin glass phase associated with high temperature and low transverse field, the observed distribution is broad akin to the Parisi order parameter distribution. This essentially indicates the non-ergodic behaviour of the system. We further discuss the annealing dynamics studies on the quantum SK model. Such investigations reveal the system size independence of annealing time when the annealing paths go through the ergodic spin glass region. Interestingly, when such dynamics are performed in the non-ergodic spin glass phase the annealing time becomes an increasing function of the system size. Spin autocorrelation shows faster relaxation in the ergodic spin glass region compared with that found in the non-ergodic spin glass region. This article is part of the theme issue 'Quantum annealing and computation: challenges and perspectives'.

量子涨落在诱导自旋玻璃相遍历性中的作用及其在量子退火中的影响。
我们回顾了量子谢林顿-柯克帕特里克(SK)自旋玻璃模型的临界行为的数值研究,这些研究表明,在低但非零的温度值之前,可以观察到量子临界行为。我们回顾了自旋玻璃序参量分布的数值研究,确定了低温高横向场自旋玻璃相的序参量分布在热力学极限下成为一个delta函数,表明系统的复制对称性和遍历性的恢复。在高温低横向场的剩余自旋玻璃相中,观测到的分布较宽,类似于Parisi阶参量分布。这本质上表明了系统的非遍历行为。我们进一步讨论了量子SK模型的退火动力学研究。这些研究揭示了当退火路径经过遍历自旋玻璃区时,系统尺寸与退火时间无关。有趣的是,当这种动力学在非遍历自旋玻璃相中进行时,退火时间成为系统尺寸的递增函数。自旋自相关在遍历自旋玻璃区显示出比非遍历自旋玻璃区更快的弛豫。本文是主题“量子退火与计算:挑战与展望”的一部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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