Fick–Jacobs description and first passage dynamics for diffusion in a channel under stochastic resetting

Author:

Jain Siddharth1ORCID,Boyer Denis2ORCID,Pal Arnab34ORCID,Dagdug Leonardo5ORCID

Affiliation:

1. Harish-Chandra Research Institute, HBNI 1 , Chhatnag Road, Jhunsi, Allahabad (Prayagraj), UP, 211019, India

2. Instituto de Física, Universidad Nacional Autónoma de México 2 , Ciudad de México C.P. 04510, Mexico

3. The Institute of Mathematical Sciences, CIT Campus 3 , Taramani, Chennai 600113, India

4. Homi Bhabha National Institute, Training School Complex 4 , Anushakti Nagar, Mumbai 400094, India

5. Physics Department, Universidad Autónoma Metropolitana-Iztapalapa 5 , San Rafael Atlixco 186, Ciudad de México 09340, Mexico

Abstract

The transport of particles through channels is of paramount importance in physics, chemistry, and surface science due to its broad real world applications. Much insight can be gained by observing the transition paths of a particle through a channel and collecting statistics on the lifetimes in the channel or the escape probabilities from the channel. In this paper, we consider the diffusive transport through a narrow conical channel of a Brownian particle subject to intermittent dynamics, namely, stochastic resetting. As such, resetting brings the particle back to a desired location from where it resumes its diffusive phase. To this end, we extend the Fick–Jacobs theory of channel-facilitated diffusive transport to resetting-induced transport. Exact expressions for the conditional mean first passage times, escape probabilities, and the total average lifetime in the channel are obtained, and their behavior as a function of the resetting rate is highlighted. It is shown that resetting can expedite the transport through the channel—rigorous constraints for such conditions are then illustrated. Furthermore, we observe that a carefully chosen resetting rate can render the average lifetime of the particle inside the channel minimal. Interestingly, the optimal rate undergoes continuous and discontinuous transitions as some relevant system parameters are varied. The validity of our one-dimensional analysis and the corresponding theoretical predictions is supported by three-dimensional Brownian dynamics simulations. We thus believe that resetting can be useful to facilitate particle transport across biological membranes—a phenomenon that can spearhead further theoretical and experimental studies.

Funder

Science and Engineering Research Board

Centro de Investigación Científica y de Educación Superior de Ensenada, Baja California

Publisher

AIP Publishing

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy

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1. Fractional heterogeneous telegraph processes: Interplay between heterogeneity, memory, and stochastic resetting;Physical Review E;2024-08-02

2. Power-law relaxation of a confined diffusing particle subject to resetting with memory;Journal of Statistical Mechanics: Theory and Experiment;2024-07-15

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4. Regular and anomalous diffusion: I. Foundations;Journal of Physics A: Mathematical and Theoretical;2024-05-28

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