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Nonequilibrium dynamic transition in a kinetic Ising model driven by both deterministic modulation and correlated stochastic noises

机译:确定性调制和相关随机噪声共同驱动的动力学伊辛模型中的非平衡动态过渡

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摘要

We report the nonequilibrium dynamical phase transition (NDPT) appearing in a kinetic Ising spin system (ISS) subject to the joint application of a deterministic external field and the stochastic mutually correlated noises simultaneously. A time-dependent Ginzburg-Landau stochastic differential equation, including an oscillating modulation and the correlated multiplicative additive white noises, was addressed and the numerical solution to the relevant Fokker-Planek equation was presented on the basis of an average-period approach of driven field. The correlated white noises and the deterministic modulation induce a kind of dynamic symmetry-breaking order, analogous to the stochastic resonance in trend, in the kinetic ISS, and the reentrant transition has been observed between the dynamic disorder and order phases when the intensities of multiplicative and additive noises were changing. The dependencies of a dynamic order parameter Q upon the intensities of additive noise A and multiplicative noise M, the correlation A between two noises, and the amplitude of applied external field h were investigated quantitatively and visualized vividly. Here a brief discussion is given to outline the underlying mechanism of the NDPT in a kinetic ISS driven by an external force and correlated noises.
机译:我们报告了动态伊辛自旋系统(ISS)中出现的非平衡动态相变(NDPT),同时受确定性外部场和随机相互关联的噪声共同作用。研究了一个时变的Ginzburg-Landau随机微分方程,包括一个振荡调制和相关的乘性加性白噪声,并基于驱动场的平均周期方法给出了相关Fokker-Planek方程的数值解。 。相关的白噪声和确定性调制在动态ISS中诱发了一种动态对称破坏阶跃,类似于趋势中的随机共振,并且当乘法强度增强时,在动态无序和阶跃相之间观察到折返过渡和附加噪声正在变化。定量研究了动态阶数参数Q对加性噪声A和乘性噪声M的强度,两个噪声之间的相关性A以及所施加的外部磁场h的依赖关系,并对其进行了生动地可视化。在此简要讨论,以概述由外力和相关噪声驱动的动态ISS中NDPT的潜在机制。

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