Thermally induced directed currents in hard rod systems
arXiv:1205.5392 · doi:10.1007/s10035-012-0334-3
Abstract
We study the non equilibrium statistical properties of a one dimensional hard-rod fluid undergoing collisions and subject to a spatially non uniform Gaussian heat-bath and periodic potential. The system is able to sustain finite currents when the spatially inhomogeneous heat-bath and the periodic potential profile display an appropriate relative phase shift, . By comparison with the collisionless limit, we determine the conditions for the most efficient transport among inelastic, elastic and non interacting rods. We show that the situation is complex as, depending on shape of the temperature profile, the current of one system may outperform the others.
5 pages, 2 figures
References in corpus (4)
- Inertial effects in B{ü}ttiker-Landauer Motor and Refrigerator at the Overdamped Limit
- A Granular Brownian Ratchet Model
- Theory of thermostatted inhomogeneous granular fluids: a self-consistent density functional description
- Multiple time-scale approach for a system of Brownian particles in a non-uniform temperature field