English

Resolution dependence of most probable pathways with state-dependent diffusivity

Statistical Mechanics 2024-02-05 v1 Mesoscale and Nanoscale Physics Soft Condensed Matter Chemical Physics

Abstract

Recent experiments have probed the relative likelihoods of trajectories in stochastic systems by observing survival probabilities within a tube of radius RR in spacetime. We measure such probabilities here for a colloidal particle in a corrugated channel, corresponding to a bistable potential with state-dependent diffusivity. In contrast to previous findings for state-independent noise, we find that the most probable pathway changes qualitatively as the tube radius RR is altered. We explain this by computing the survival probabilities predicted by overdamped Langevin dynamics. At high enough resolution (small enough RR), survival probabilities depend solely on diffusivity variations, independent of deterministic forces; finite RR corrections yield a generalization of the Onsager-Machlup action. As corollary, ratios of survival probabilities are singular as R0R \to 0, but become regular, and described by the classical Onsager-Machlup action, only in the special case of state-independent noise.

Keywords

Cite

@article{arxiv.2402.01559,
  title  = {Resolution dependence of most probable pathways with state-dependent diffusivity},
  author = {Alice L. Thorneywork and Jannes Gladrow and Ulrich F. Keyser and Michael E. Cates and Ronojoy Adhikari and Julian Kappler},
  journal= {arXiv preprint arXiv:2402.01559},
  year   = {2024}
}

Comments

6 pages, 3 figures. Note also the accompanying manuscript arXiv:2009.04250

R2 v1 2026-06-28T14:36:05.444Z