Study of Thermodynamically Inspired Quantities for Both Thermaland External Colored Non-Gaussian Noises Driven Dynamical System

M. K. Sen, A. Baura, B. C. Bag
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Abstract

We have studied dynamics of both internal and external noises-driven dynamical system in terms of information entropy at both nonstationary and stationary states. Here a unified description of entropy flux and entropy production is considered. Based on the Fokker-Planck description of stochastic processes and the entropy balance equation we have calculated time dependence of the information entropy production and entropy flux in presence and absence of nonequilibrium constraint (NEC). In the presence of NEC we have observed extremum behavior in the variation of entropy production as function of damping strength, noise correlation, and non-Gaussian parameter (which determine the deviation of external noise behavior from Gaussian characteristic), respectively. Thus the properties of noise process are important for entropy production.
热和外部有色非高斯噪声驱动动力系统的热力学启发量研究
我们从信息熵的角度研究了内外噪声驱动的动力系统在非平稳和平稳状态下的动力学。这里考虑了熵通量和熵产生的统一描述。基于随机过程的Fokker-Planck描述和熵平衡方程,计算了存在和不存在非平衡约束时信息熵产生和熵通量的时间依赖性。在NEC的存在下,我们分别观察到熵产生变化的极值行为,作为阻尼强度、噪声相关性和非高斯参数(决定外部噪声行为与高斯特征的偏差)的函数。因此,噪声过程的性质对熵的产生是很重要的。
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