论文标题

长期$ O(n \ to \ infty)$模型的量子老化和动态普遍性

Quantum aging and dynamical universality in the long-range $O(N\to\infty)$ model

论文作者

Halimeh, Jad C., Maghrebi, Mohammad F.

论文摘要

量子淬灭至临界点或接近临界,从而产生\ textit {衰老}的现象,该现象在短时间内由玻璃状动力学表现出来,而远离平衡。最近对量子多体系统动力学的兴趣激增使人们对此现象兴起了兴趣。在新兴实验平台中无处不在的远程相互作用的动机,在这种情况下研究量子老化至关重要。在这项工作中,我们研究了$ d $ d $ d $ o(n)$模型中的动态普遍性和老化,并具有远距离耦合$ 1/x^{d+σ} $,以及在平均限制限制$ n \ to \ to \ infty $中,可以进行精确处理。远程耦合的直接结果是非线性光锥的出现。我们专注于相关性和响应功能,并根据\ textIt {local Light锥}以及通过全局\ textit {Qextit {Quench Light Light pon}来确定相对于相应的时空位置如何相对于彼此的位置的方式来确定丰富的缩放行为。我们确定控制两点函数短时依赖性的初始滑移指数。由于远距离耦合,特别是在光锥外部的区域,我们强调了衰老的新定性特征。作为远程耦合的重要结果,相关函数衰减为$ 1/x^{d+σ} $外部的淬火灯锥外,同时随着淬火后的总时间多一级增加。这是在短时间内的,两次响应函数甚至在\ textit {ash asher}距离之外的距离之外。我们的分析发现与确切的数字非常吻合,并为具有长距离相互作用的现代实验平台提供了有用的基准。

Quantum quenches to or near criticality give rise to the phenomenon of \textit{aging}, manifested by glassy-like dynamics at short times and far from equilibrium. The recent surge of interest in the dynamics of quantum many-body systems has rejuvenated interest in this phenomenon. Motivated by the ubiquitous long-range interactions in emerging experimental platforms, it is vital to study quantum aging in such settings. In this work, we investigate the dynamical universality and aging in the $d$-dimensional $O(N)$ model with the long-range coupling $1/x^{d+σ}$ and in the mean-field limit $N\to\infty$ that allows an exact treatment. An immediate consequence of long-range coupling is the emergence of nonlinear light cones. We focus on the correlation and response functions, and identify a rich scaling behavior depending on how the corresponding space-time positions are located relative to each other, via a \textit{local light cone}, and to the time of the quench via a global \textit{quench light cone}. We determine the initial-slip exponent that governs the short-time dependence of two-point functions. We highlight the new qualitative features of aging due to the long-range coupling, in particular in the region outside the light cones. As an important consequence of long-range coupling, the correlation function decays as $1/x^{d+σ}$ outside the quench light cone while increasing polynomially with the total time after quench. This is while, for short time differences, the two-time response function "equilibrates" at \textit{all} distances even outside this light cone. Our analytic findings are in excellent agreement with exact numerics, and provide a useful benchmark for modern experimental platforms with long-range interactions.

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