arXiv · 2002.07254
Stationary properties of a Brownian gyrator with non-Markovian baths
Abstract
We investigate the stochastic behavior of a two-temperature Langevin system with non-Markovian thermal reservoirs. The model describes an overdamped Brownian particle in a quadratic potential and coupled to heat baths at different temperatures. The reservoirs are characterized by Gaussian white and colored noises and a dissipation memory kernel. The stationary states present non-trivial average rotational motion influenced by stochastic torques due to harmonic, friction and fluctuating thermal forces. However, the Markovian limit leads to a vanishing average torque produced by fluctuating thermal forces. We also study the effects of memory on the stochastic heat and the entropy production in the steady-state regime.
Explore related subjects
Keep this discovery
Eduardo dos S. Nascimento, Welles A. M. Morgado. 2020-02-17. Stationary properties of a Brownian gyrator with non-Markovian baths. https://arxiv.org/abs/2002.07254
Cite the original work for its findings. Save a collection to share your selection of sources.