The noise properties of stochastic processes and entropy production
arXiv:cond-mat/0104524 · doi:10.1103/PhysRevE.64.026110
Abstract
Based on a Fokker-Planck description of external Ornstein-Uhlenbeck noise and cross-correlated noise processes driving a dynamical system we examine the interplay of the properties of noise processes and the dissipative characteristic of the dynamical system in the steady state entropy production and flux. Our analysis is illustrated with appropriate examples.
RevTex, 1 figure, To appear in Phys. Rev. E
Cited by in corpus (10)
- Correlated noise in a logistic growth model
- Upper bound for the time derivative of entropy for nonequilibrium stochastic processes
- Differential entropy and time
- Nonequilibrium stochastic processes: Time dependence of entropy flux and entropy production
- Multiplicative cross-correlated noise induced escape rate from a metastable state
- Temporal Behavior of the Conditional and Gibbs' Entropies
- Stationary and dynamical properties of information entropies in nonextensive systems
- Energy and entropy of relativistic diffusing particles
- Microscopic realization of cross-correlated noise processes
- Fluctuation and dissipation in memoryless open quantum evolutions