Relaxation and fluctuations of a mass- and dipole-conserving stochastic lattice gas
Baruch Meerson

TL;DR
This paper studies the relaxation and fluctuation behaviors of a novel dipole- and mass-conserving stochastic lattice gas, extending macroscopic fluctuation theory to analyze large deviations and equilibrium properties.
Contribution
It introduces an extension of macroscopic fluctuation theory to a dipole-conserving lattice gas, analyzing relaxation, fluctuations, and large deviations.
Findings
Derived similarity solutions for relaxation dynamics.
Extended macroscopic fluctuation theory to dipole-conserving systems.
Calculated fluctuation variances and large deviation probabilities.
Abstract
Han et al. [Phys. Rev. Lett. \textbf{132}, 137102 (2024)] have recently introduced a classical stochastic lattice gas model which, in addition to particle conservation, also conserves the particles' dipole moment. Because of its intrinsic nonlinearity this model exhibits unusual macroscopic scaling behaviors, different from those of lattice gases that conserve only the number of particles. Here we investigate some basic relaxation and fluctuation properties of this model at large scales and at long times. These properties crucially depend on whether the total number of particles is infinite or finite. We find similarity solutions, describing relaxation of the dipole-conserving gas (DCG) in several standard settings. A major part of our effort is an extension to this model of the macroscopic fluctuation theory (MFT), previously developed for lattice gases where only the number of…
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Taxonomy
TopicsCold Atom Physics and Bose-Einstein Condensates · Atomic and Subatomic Physics Research · Optical properties and cooling technologies in crystalline materials
