Mpemba effect in anisotropically driven inelastic Maxwell gases
arXiv:2105.01972 · doi:10.1007/s10955-022-02891-w
Abstract
Through an exact analysis, we show the existence of Mpemba effect in an anisotropically driven inelastic Maxwell gas, a simplified model for granular gases, in two dimensions. Mpemba effect refers to the couterintuitive phenomenon of a hotter system relaxing to the steady state faster than a cooler system, when both are quenched to the same lower temperature. The Mpemba effect has been illustrated in earlier studies on isotropically driven granular gases, but its existence requires non-stationary initial states, limiting experimental realisation. In this paper, we demonstrate the existence of the Mpemba effect in anisotropically driven granular gases even when the initial states are non-equilibrium steady states. The precise conditions for the Mpemba effect, its inverse, and the stronger version, where the hotter system cools exponentially faster are derived.
18 pages, 4 figures. arXiv admin note: text overlap with arXiv:2004.11559
References in corpus (13)
- Exponentially faster cooling in a colloidal system
- Exponentially accelerated approach to stationarity in Markovian open quantum systems through the Mpemba effect
- Mpemba effect in molecular gases under nonlinear drag
- Should a hotter paramagnet transform quicker to a ferromagnet? Monte Carlo simulation results for Ising model
- Anomalous cooling and overcooling of active systems
- Mpemba effect in inertial suspensions
- Toward relaxation asymmetry: Heating is faster than cooling
- Mpemba effect in an anisotropically driven granular gas
- Kovacs memory effect with an optically levitated nanoparticle
- Slow growth of magnetic domains helps fast evolution routes for out-of-equilibrium dynamics
- Anomalous thermal relaxation of Langevin particles in a piecewise-constant potential
- Strong non-exponential relaxation and memory effects in a fluid with non-linear drag
- Asymptotic velocity distribution of a driven one dimensional binary granular Maxwell gas
Cited by in corpus (13)
- Relaxation shortcuts through boundary coupling
- Speedups in nonequilibrium thermal relaxation: Mpemba and related effects
- Mpemba effect in a Langevin system: population statistics, metastability and other exact results
- Mpemba meets Newton: Exploring the Mpemba and Kovacs effects in the time-delayed cooling law
- Non-equilibrium memory effects: granular fluids and beyond
- Confined granular gases under the influence of vibrating walls
- Fast Functionalization with High Performance in the Autonomous Information Engine
- Mpemba effect in the relaxation of an active Brownian particle in a trap without metastable states
- Predicting the Mpemba Effect Using Machine Learning
- Mpemba effect on non-equilibrium active Markov chains
- The Mpemba effect in the Descartes protocol: A time-delayed Newton's law of cooling approach
- Mpemba-like effect protocol for granular gases of inelastic and rough hard disks
- Thermal versus entropic Mpemba effect in molecular gases with nonlinear drag