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Fluctuating systems under cyclic perturbations: Relation between energy dissipation and intrinsic relaxation processes

机译:循环扰动下的波动系统:能量耗散与内在弛豫过程之间的关系

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This study focuses on fluctuating classical systems in contact with a thermal bath, and whose configurational energetics undergoes cyclic transformations due to interaction with external perturbing agents. Under the assumptions that the configurational dynamics is a stochastic Markov process in the overdamped regime and that the nonequilibrium configurational distribution remains close to the underlying equilibrium one, we derived an analytic approximation of the average dissipated energy per cycle in the asymptotic limit (i.e., after many cycles of perturbation). The energy dissipation is then readily translated into average entropy production, per cycle, in the environment. The accuracy of the approximation was tested by comparing the outcomes with the exact values obtained by stochastic simulations of a model case: a “particle on a ring” that fluctuates in a bistable potential perturbed in two different ways. As pointed out in previous studies on the stochastic resonance phenomenon, the dependence of the average dissipation on the perturbation period may unveil the inner spectrum of the system's fluctuation rates. In this respect, the analytical approximation presented here makes it possible to unveil the connection between average dissipation, intrinsic rates and modes of fluctuation of the system at the unperturbed equilibrium, and features of the perturbation itself (namely, the period of the cycle and the projections of the energy perturbation over the system's modes). The possibilities of employing the analytical results as a guide to devising and rationalizing a sort of “spectroscopic calorimetry” experiment, and of employing them in strategies aiming to optimize the system's features on the basis of a target average dissipation, are briefly discussed.
机译:该研究侧重于与热浴接触的经典系统,并且其配置能量由于与外部扰动剂的相互作用而受到循环变换。在配置动态是覆盖制度中的随机马尔可夫过程中的假设下,并且非纤维配置分布仍然接近底层平衡,我们在渐近极限中衍生出每周期平均耗散能量的分析近似(即,之后许多扰动周期)。然后将能量耗散容易地转化为环境中的平均熵产生,环境中的环境。通过将结果与模型壳的随机模拟所获得的确切值进行比较来测试近似的准确性:“环上的颗粒”,其在双稳态电位中波动以两种不同的方式。如先前研究随机共振现象的先前研究,平均耗散对扰动期的依赖可以推出系统的波动率的内谱。在这方面,这里呈现的分析近似使得可以推出平均耗散,内在速度和系统在不受干扰的平衡下的波动之间的连接,以及扰动本身的特征(即循环的时期和能量扰动对系统模式的投影)。将分析结果作为设计和合理化一种“光谱量热法”实验的指导,并在旨在在目标平均耗散的基础上进行旨在优化系统特征的策略,以便使用它们的可能性。

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