Directed motion and useful work from an isotropic nonequilibrium distribution
arXiv:0711.4105 · doi:10.1103/PhysRevE.77.011115
Abstract
We demonstrate that a gas of classical particles trapped in an external asymmetric potential undergoes a quasiperiodic motion, if the temperature of its initial velocity distribution differs from the equilibrium temperature, . The magnitude of the effect is determined by the value of , and the direction of the motion is determined by the sign of this expression. The "loading'' and "unloading'' of the gas particles change directions of their motion, thereby creating a possibility of shuttle-like motion. The system works as a Carnot engine where the heat flow between kinetic and potential parts of the nonequilibrium distribution produces the useful work.