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首页> 外文期刊>Annals of Physics >Out-of-time-order operators operators and the butterfly effect
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Out-of-time-order operators operators and the butterfly effect

机译:OUT-TACETORE ORDOR OPERALS运营商和蝴蝶效果

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Out-of-time-order (OTO) operators have recently become popular diagnostics of quantum chaos in many-body systems. The usual way they are introduced is via a quantization of classical Lyapunov growth, which measures the divergence of classical trajectories in phase space due to the butterfly effect. However, it is not obvious how exactly they capture the sensitivity of a quantum system to its initial conditions beyond the classical limit. In this paper, we analyze sensitivity to initial conditions in the quantum regime by recasting OTO operators for many-body systems using various formulations of quantum mechanics. Notably, we utilize the Wigner phase space formulation to derive an h-expansion of the OTO operator for spatial degrees of freedom, and a large spin 1/s-expansion for spin degrees of freedom. We find in each case that the leading term is the Lyapunov growth for the classical limit of the system and argue that quantum corrections become dominant at around the scrambling time, which is also when we expect the OTO operator to saturate. We also express the OTO operator in terms of propagators and see from a different point of view how it is a quantum generalization of the divergence of classical trajectories. (C) 2018 Elsevier Inc. All rights reserved.
机译:OUT-ord-Order(OTO)运营商最近在许多身体系统中成为量子混沌的流行诊断。他们介绍的通常方式是通过量化古典Lyapunov的增长,这衡量由于蝴蝶效应导致的古典轨迹的分歧。然而,它们是明显的,它们迄今捕获量子系统的灵敏度迄今捕获到其初始条件之外的常规限制。在本文中,我们通过使用各种量子力学配方重新携带OTO运算符来分析量子制度中的初始条件的敏感性。值得注意的是,我们利用Wigner相位空间配方来导出OTO运算符的H扩展,用于空间自由度,以及用于旋转自由度的大型旋转1 / S扩展。我们发现在每种情况下,领先的术语是Lyapunov为系统经典极限的增长,并认为量子校正在扰乱时间周围占主导地位,这也是我们预期OTO运算符饱和的时候。我们还在传播者方面表达了OTO运营商,从不同的角度看,如何如何普通轨迹的差异化的量子概括。 (c)2018年Elsevier Inc.保留所有权利。

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