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首页> 外文期刊>Physical review, B >Nonmonotonic response and light-cone freezing in fermionic systems under quantum quenches from gapless to gapped or partially gapped states
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Nonmonotonic response and light-cone freezing in fermionic systems under quantum quenches from gapless to gapped or partially gapped states

机译:在量子淬火的Fermionic系统中冻结的非单调响应和轻锥形从无光血淬火到间隙或部分覆盖状态

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The properties of prototypical examples of one-dimensional fermionic systems undergoing a sudden quantum quench from a gapless state to a (partially) gapped state are analyzed. By means of a generalized Gibbs ensemble analysis or by numerical solutions in the interacting cases, we observe an anomalous, nonmonotonic response of steady-state correlation functions as a function of the strength of the mechanism opening the gap. In order to interpret this result, we calculate the full dynamical evolution of these correlation functions, which shows a freezing of the propagation of the quench information (light cone) for large quenches. We argue that this freezing is responsible for the nonmonotonous behavior of observables. In continuum noninteracting models, this freezing can be traced back to a Klein-Gordon equation in the presence of a source term. We conclude by arguing in favor of the robustness of the phenomenon in the cases of nonsudden quenches and higher dimensionality.
机译:分析了经历突然量子骤冷的一维Fermionic系统的特性实例,从无间隙状态到A(部分)隐形状态。 通过相互化的GIBBS集合分析或在相互作用的情况下通过数值解决方案,我们观察到稳态相关函数的异常,非调调响应,因为该稳态相关函数的函数是打开间隙的机构的强度。 为了解释该结果,我们计算这些相关函数的完全动态演化,其示出了用于大淬火的淬火信息(光锥)的传播冻结。 我们认为这种冻结是对可观察到的非单调行为负责。 在连续的非交互式模型中,在源期限存在下,这种冷冻可以追溯到Klein-Gordon方程。 我们通过争论非乳房淬火和更高的维度案件的鲁棒性来争论。

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