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有限孤立相互作用弗洛凯系统中热化的缺失

Absence of Thermalization in Finite Isolated Interacting Floquet Systems.

作者信息

Seetharam Karthik, Titum Paraj, Kolodrubetz Michael, Refael Gil

机构信息

Institute for Quantum Information and Matter, Caltech, Pasadena, California 91125, USA.

Joint Quantum Institute and Joint Center for Quantum Information and Computer Science, NIST/University of Maryland, College Park, Maryland 20742, USA.

出版信息

Phys Rev B. 2018 Jan;97(1). doi: 10.1103/physrevb.97.014311.

Abstract

Conventional wisdom suggests that the long time behavior of isolated interacting periodically driven (Floquet) systems is a featureless maximal entropy state characterized by an infinite temperature. Efforts to thwart this uninteresting fixed point include adding sufficient disorder to realize a Floquet many-body localized phase or working in a narrow region of drive frequencies to achieve glassy non-thermal behavior at long time. Here we show that in clean systems the Floquet eigenstates can exhibit non-thermal behavior due to finite system size. We consider a one-dimensional system of spinless fermions with nearest-neighbor interactions where the interaction term is driven. Interestingly, even with no static component of the interaction, the quasienergy spectrum contains gaps and a significant fraction of the Floquet eigenstates, at all quasienergies, have non-thermal average doublon densities. We show that this non-thermal behavior arises due to emergent integrability at large interaction strength and discuss how the integrability breaks down with power-law dependence on system size.

摘要

传统观点认为,孤立的相互作用周期性驱动(弗洛凯)系统的长时间行为是一种无特征的最大熵状态,其特征为无限温度。为了避免这种无趣的不动点,人们采取了各种措施,包括添加足够的无序以实现弗洛凯多体局域相,或者在较窄的驱动频率范围内工作以在长时间内实现玻璃态非热行为。在此我们表明,在清洁系统中,由于系统尺寸有限,弗洛凯本征态可呈现非热行为。我们考虑一个具有最近邻相互作用的无自旋费米子一维系统,其中相互作用项是受驱动的。有趣的是,即使相互作用没有静态分量,准能谱中也存在能隙,并且在所有准能下,相当一部分弗洛凯本征态具有非热平均双空穴密度。我们表明,这种非热行为是由于在大相互作用强度下出现的可积性而产生的,并讨论了可积性如何随着对系统尺寸的幂律依赖而失效。

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