Nested Stochastic Resetting: Nonequilibrium Steady-states and Exact Correlations
Abstract
Stochastic resetting breaks detailed balance and drives the formation of nonequilibrium steady states . Here, we consider a chain of diffusive processes that interact unilaterally: at random time intervals, the process stochastically resets to the instantaneous value of . We derive analytically the steady-state statistics of these nested stochastic resetting processes including the stationary distribution for each process as well as its moments. We are also able to calculate exactly the steady-state two-point correlations between processes by mapping the problem to one of the ordering statistics of random counting processes. Understanding statistics and correlations in many-particle nonequilibrium systems remains a formidable challenge and our results provide an example of such tractable correlations. We expect this framework will both help build a model-independent framework for random processes with unilateral interactions and find immediate applications, e.g. in the modelling of lossy information propagation.
Cite
@article{arxiv.2502.03225,
title = {Nested Stochastic Resetting: Nonequilibrium Steady-states and Exact Correlations},
author = {Henry Alston and Callum Britton and Thibault Bertrand},
journal= {arXiv preprint arXiv:2502.03225},
year = {2025}
}
Comments
6 pages (3 figures) of main text + 9 pages (4 figures) of supplementary information