Boundary-Induced Drift and Negative Mobility in Constrained Stochastic Systems
arXiv:2601.08021 · doi:10.1103/6pm1-ln14
Abstract
We study overdamped stochastic dynamics confined by hard reflecting boundaries and show that the combination of boundary geometry and an anisotropic diffusion tensor generically generates directed motion. At the level of individual trajectories, the no-flux condition enforces an oblique reflection at the boundary, which produces a systematic drift parallel to the surface. The resulting local velocity takes the general form , determined by the diffusion tensor and the local boundary geometry encoded in the normal and tangent . While this boundary-induced drift is local, it can accumulate into a macroscopic response, depending on the statistics of boundary encounters. We illustrate how this local boundary-induced drift gives rise to macroscopic transport using a minimal one-dimensional dimer composed of two particles with unequal diffusion coefficients. The repeated collisions act as reflections in configuration space and lead to sustained center-of-mass motion, including regimes of absolute negative mobility under constant forcing.
References in corpus (17)
- Active Particles in Complex and Crowded Environments
- Brownian motors: noisy transport far from equilibrium
- Artificial Brownian motors: Controlling transport on the nanoscale
- Statistical Mechanics of Interacting Run-and-Tumble Bacteria
- Brownian motion exhibiting absolute negative mobility
- Exact microscopic analysis of a thermal Brownian motor
- The Brownian gyrator: a minimal heat engine on the nano-scale
- Morphological computation and decentralized learning in a swarm of sterically interacting robots
- Energy flow between two hydrodynamically coupled particles kept at different effective temperatures
- A minimal model of an autonomous thermal motor
- Oscillatory force autocorrelations in equilibrium odd-diffusive systems
- Hot Particles Attract in a Cold Bath
- Long-time diffusion and energy transfer in polydisperse mixtures of particles with different temperatures
- Diffusion of a tracer in a dense mixture of soft particles connected to different thermostats
- Driven anisotropic diffusion at boundaries: noise rectification and particle sorting
- Experimental realization of an analog of entanglement between two Brownian particles
- A Cold Tracer in a Hot Bath: In and Out of Equilibrium