Two-temperature Langevin dynamics in a parabolic potential
arXiv:1302.4056 · doi:10.1103/PhysRevE.87.062130
Abstract
We study a planar two-temperature diffusion of a Brownian particle in a parabolic potential. The diffusion process is defined in terms of two Langevin equations with two different effective temperatures in the X and the Y directions. In the stationary regime the system is described by a non-trivial particle position distribution P(x,y), which we determine explicitly. We show that this distribution corresponds to a non-equilibrium stationary state, characterised by the presence of space-dependent particle currents which exhibit a non-zero rotor. Theoretical results are confirmed by the numerical simulations.
9 pages, 2 figures
References in corpus (4)
Cited by in corpus (46)
- Overdamped stochastic thermodynamics with multiple reservoirs
- Two-temperature Brownian dynamics of a particle in a confining potential
- Asymmetry relations and effective temperatures for biased Brownian gyrators
- Engineered Swift Equilibration of a Brownian Gyrator
- A minimal model of an autonomous thermal motor
- Dynamical large deviations of linear diffusions
- Approach to equilibrium and non-equilibrium stationary distributions of interacting many-particle systems that are coupled to different heat baths
- Thermal ratchet effect in confining geometries
- Inertial effects on the Brownian gyrator
- Correlations in multithermostat Brownian systems with Lorentz force
- Nonequilibrium diffusion processes via non-Hermitian electromagnetic quantum mechanics with application to the statistics of entropy production in the Brownian gyrator
- Transport coefficients for a confined Brownian ratchet operating between two heat reservoirs
- Autonomous Brownian gyrators: a study on gyrating characteristics
- Autonomous quantum rotator
- Non-invasive estimation of dissipation from non-equilibrium fluctuations in chemical reactions
- Non-equilibrium probability flux of a thermally driven micromachine
- Spectral fingerprints of non-equilibrium dynamics: The case of a Brownian gyrator
- Non-normality, reactivity, and intrinsic stochasticity in neural dynamics: a non-equilibrium potential approach
- Theoretical description of effective heat transfer between two viscously coupled beads
- Order-preserving dynamics in one dimension -- single-file diffusion and caging from the perspective of dynamical density functional theory
- Inferring entropy production in anharmonic Brownian gyrators
- Three-body problem for Langevin dynamics with different temperatures
- Dynamics and steady states of a tracer particle in a confined critical fluid
- Large deviations of the stochastic area for linear diffusions
- Far-from-equilibrium noise heating and laser cooling dynamics in radio-frequency Paul traps
- Memory and irreversibility on two-dimensional overdamped Brownian dynamics
- Current-mediated synchronization of a pair of beating non-identical flagella
- Variance sum rule: proofs and solvable models
- Open Quantum Rotors: Connecting Correlations and Physical Currents
- Fractional Brownian Gyrator
- Information Arbitrage in Bipartite Heat Engines
- Cooperative dynamics in two-component out-of-equilibrium systems: Molecular "spinning tops"
- Minimum time connection between non-equilibrium steady states: the Brownian gyrator
- Frequency-frequency correlations of single-trajectory spectral densities of Gaussian processes
- Destructive effect of fluctuations on the performance of a Brownian gyrator
- Can a periodically driven particle resist laser cooling and noise?
- Universal Ideal Behavior and Macroscopic Work Relation of Linear Irreversible Stochastic Thermodynamics
- Irregular gyration of a two-dimensional random-acceleration process in a confining potential
- Force-free kinetic inference of entropy production
- Statistical mechanics of clonal expansion in lymphocyte networks modelled with slow and fast variables
- Signals of Detailed Balance Violation in Nonequilibrium Stationary States: Subtle, Manifest, and Extraordinary
- Active responsive colloids driven by intrinsic dichotomous noise
- Energy harvesting from anisotropic fluctuations
- Classification of diffusion processes in dimension via the Carleman approach with applications to models involving additive, multiplicative or square-root noises
- Sustaining a temperature difference
- Brownian magneto-gyrator as a tunable microengine