Quantum kinetic theory of flux-carrying Brownian particles
arXiv:2110.15652 · doi:10.1088/1742-5468/ac7a2e
Abstract
We develop the kinetic theory of the flux-carrying Brownian motion recently introduced in the context of open quantum systems. This model constitutes an effective description of two-dimensional dissipative particles violating both time-reversal and parity that is consistent with standard thermodynamics. By making use of an appropriate Breit-Wigner approximation, we derive the general form of its quantum kinetic equation for weak system-environment coupling. This encompasses the well-known Kramers equation of conventional Brownian motion as a particular instance. The influence of the underlying chiral symmetry is essentially twofold: the anomalous diffusive tensor picks up antisymmtretic components, and the drift term has an additional contribution which plays the role of an environmental torque acting upon the system particles. These yield an unconventional fluid dynamics that is absent in the standard (two-dimensional) Brownian motion subject to an external magnetic field or an active torque. For instance, the quantum single-particle system displays a dissipationless vortex flow in sharp contrast with ordinary diffusive fluids. We also provide preliminary results concerning the relevant hydrodynamics quantities, including the fluid vorticity and the vorticity flux, for the dilute scenario near thermal equilibrium. In particular, the flux-carrying effects manifest as vorticity sources in the Kelvin's circulation equation. Conversely, the energy kinetic density remains unchanged and the usual Boyle's law is recovered up to a reformulation of the kinetic temperature.
24+8 pages, 8 figures. Comments are welcome. Introduction has been substantially modified. Several new sections have been added as well as a brief overview to closely related works. Close to the published version
References in corpus (11)
- Calculation of Magnetic Field Noise from High-Permeability Magnetic Shields and Conducting Objects with Simple Geometry
- Exact analytical solutions to the master equation of quantum Brownian motion for a general environment
- Quantum Kinetic Theory of the Chiral Anomaly
- Hamiltonian and Brownian systems with long-range interactions: V. Stochastic kinetic equations and theory of fluctuations
- Phenomenology of non-relativistic parity-violating hydrodynamics in 2+1 dimensions
- Dissipative and Hall viscosity of a disordered 2D electron gas
- Statistical Mechanics and the Physics of the Many-Particle Model Systems
- Statistical mechanics of transport processes in active fluids: Equations of hydrodynamics
- Two-dimensional Brownian vortices
- A short guide to topological terms in the effective theories of condensed matter
- Thermal quantum electrodynamics of nonrelativistic charged fluids