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Fluctuations in First Passage Times and Utility of Resetting Protocol in Biochemical Systems with Two-State Toggling
Hillol Kumar Barman1, Pathik Das2, Syed Yunus Ali1
1Department of Physics, Indian Institute of Technology Bombay, Powai, Mumbai 400076, India.
None:
Interesting theoretical problems of target search or threshold crossing, formally known as first passage, often arise in both diffusive transport problems and problems of chemical reaction kinetics. We study three systems following different chemical kinetics and are special as they toggle between two states: (i) a population dynamics of cells with autocatalytic birth and intermittent toxic chemical-induced forced death, (ii) a bond cluster model representing membrane adhesion to extracellular matrix under a fluctuating load, and (iii) a model of gene transcription with a regulated promoter switching between active and inactive states. Each of these systems has a target state to attain, which defines a first passage problem, namely, population becoming extinct, complete membrane detachment, or mRNA count crossing a threshold. We study the fluctuations in first passage time and show that it is interestingly nonmonotonic in all of these cases, with increasing strength of bias toward the target. We also study suitable stochastic resetting protocols to expedite first passage for these systems and show that there is a re-entrant transition of the efficacy of this protocol in all three cases, as a function of the bias. The exact analytical condition for these transitions predicted in earlier literature is verified here through simulations.
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