Work, work fluctuations, and the work distribution in a thermal non-equilibrium steady state
arXiv:1606.06505 · doi:10.1103/PhysRevE.94.052128
Abstract
Long-ranged correlations generically exist in non-equilibrium fluid systems. In the case of a non-equilibrium steady state caused by a temperature gradient the correlations are especially long-ranged and strong. The anomalous light scattering predicted to exist in these systems is well-confirmed by numerous experiments. Recently the Casimir force or pressure due to these fluctuations or correlations have been discussed in great detail. In this paper the notion of a Casimir work is introduced and a novel way to measure the non-equilibrium Casimir force is suggested. In particular, the non-equilibrium Casimir force is related to a non-equilibrium heat and not, as in equilibrium, to a volume derivative of an average energy. The non-equilibrium work fluctuations are determined and shown to be very anomalous compared to equilibrium work fluctuations. The non-equilibrium work distribution is also computed, and contrasted to work distributions in systems with short-range correlations. Again, there is a striking difference in the two cases. Formal theories of work and work distributions in non-equilibrium steady states are not explicit enough to illustrate any of these interesting features.
11 pages
References in corpus (7)
- Non equilibrium steady states: fluctuations and large deviations of the density and of the current
- The Casimir effect: from quantum to critical fluctuations
- Steady State Thermodynamics for Heat Conduction -- Microscopic Derivation
- On the work distribution for the adiabatic compression of a dilute classical gas
- Representation of nonequilibrium steady states in large mechanical systems
- Critical Casimir forces steered by patterned substrates
- Relaxation phenomena at criticality
Cited by in corpus (5)
- Critical Casimir Effect: Exact Results
- Quantum Work Fluctuations in connection with Jarzynski Equality
- Contrasting work fluctuations and distributions in systems with short-range and long-range correlations
- Work fluctuation theorems and free energy from kinetic theory
- Work probability distribution for a ferromagnet with long-ranged and short-ranged correlations