open access publication

Article, 2024

Exact fluctuation and long-range correlations in a single-file model under resetting

Physical Review E, ISSN 2470-0053, 2470-0045, 1550-2376, 1539-3755, Volume 109, 3, Page 034123, 10.1103/physreve.109.034123

Contributors

Santra, Saikat [1] Singh, Prashant 0000-0003-4296-8274 [2]

Affiliations

  1. [1] International Centre for Theoretical Sciences
  2. [NORA names: India; Asia, South];
  3. [2] University of Copenhagen
  4. [NORA names: KU University of Copenhagen; University; Denmark; Europe, EU; Nordic; OECD]

Abstract

Resetting is a renewal mechanism in which a process is intermittently repeated after a random or fixed time. This simple act of stop and repeat profoundly influences the behavior of a system as exemplified by the emergence of nonequilibrium properties and expedition of search processes. Herein we explore the ramifications of stochastic resetting in the context of a single-file system called random average process (RAP) in one dimension. In particular, we focus on the dynamics of tracer particles and analytically compute the variance, equal time correlation, autocorrelation, and unequal time correlation between the positions of different tracer particles. Our study unveils that resetting gives rise to rather different behaviors depending on whether the particles move symmetrically or asymmetrically. For the asymmetric case, the system for instance exhibits a long-range correlation which is not seen in absence of the resetting. Similarly, in contrast to the reset-free RAP, the variance shows distinct scalings for symmetric and asymmetric cases. While for the symmetric case, it decays (towards its steady value) as ∼e^{-rt}/sqrt[t], we find ∼te^{-rt} decay for the asymmetric case (r being the resetting rate). Finally, we examine the autocorrelation and unequal time correlation in the steady state and demonstrate that they obey interesting scaling forms at late times. All our analytical results are substantiated by extensive numerical simulations.

Keywords

absence, analytical results, asymmetric case, autocorrelation, averaging process, behavior, cases, context, correlation, decay, dimensions, dynamics, dynamics of tracer particles, emergency, expedition, fixed time, fluctuations, form, mechanism, model, nonequilibrium properties, numerical simulations, particles, position, process, properties, random average process, resetting, results, scale, scaling form, simulation, single-file model, single-file systems, state, steady state, stochastic resetting, stop, study, symmetric case, system, time, tracer, tracer particles, variance

Funders

  • Novo Nordisk Foundation
  • Department of Atomic Energy

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