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首页> 外文期刊>Journal of statistical mechanics: Theory and Experiment >PAPER: Classical statistical mechanics, equilibrium and non-equilibrium A strongly coupled open system with a non-linear bath: fluctuation–dissipation and Langevin dynamics
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PAPER: Classical statistical mechanics, equilibrium and non-equilibrium A strongly coupled open system with a non-linear bath: fluctuation–dissipation and Langevin dynamics

机译:纸质:具有非线性浴的古典统计力学,平衡和非平衡系统,具有非线性浴室:波动消耗和Langevin动力学

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摘要

The study of Langevin dynamics and fluctuation–dissipation relation (FDR) for a generic probe system (represented by a mass M), bilinearly coupled to a bath of harmonic oscillators, has been a standard paradigm for the microscopic theory of stochastic processes for several decades. The question that we probe in this paper is, how robust the structure of the classical FDR is, when one replaces the harmonic bath by an anharmonic one in the limit of strong system-bath coupling? Such a picture carries the signature of the probe system in the zeroth order through a nonlocal time kernel. We observe that the two-time noise correlations hold a rich structure from which the usual FDR emerges only in the leading order of perturbation. Beyond this order, multiple time scales and nontrivial dependence on the temperature starts to manifest. These new aspects conspire to break the time-translational invariance of the noise-correlations. Several other interesting features show up and we discuss them methodically through rigorous calculations order-by-order in perturbation. This formalistic derivation along with a specific example of non-linearity can be easily applied to a huge range of processes and statistical observables that fall under the purview of a system-reservoir theory.
机译:Langevin动力学和波动耗散关系(FDR)对通用探针系统(由质量m表示),双线性地耦合到谐振子振荡器的浴室,这是几十年的随机过程的微观理论的标准范式。我们在本文中探讨的问题是,古典FDR的结构是多么强大的是,当一个人在强大的系统浴耦合的极限中取代Anharmonic一个谐波浴时?这种图片通过非识别时间内核来统一验曲系统的探针系统。我们观察到,两次噪声相关性占据了丰富的结构,其中通常的FDR仅在扰动的领先顺序中出现。超出此顺序,对温度的多个时间尺度和非活动依赖性开始表现出来。这些新的方面敏锐地打破噪声相关的时间转换不变性。其他一些有趣的功能显示出来,我们通过在扰动中通过逐令通过严格的计算方法讨论它们。这种形式的衍生以及非线性的具体例子可以很容易地应用于在系统储层理论的范围内下降的大量过程和统计观察。

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