The effect of time resolution on the observed first passage times in diffusive dynamics

Author:

Song Kevin1ORCID,Makarov Dmitrii E.23ORCID,Vouga Etienne1ORCID

Affiliation:

1. Department of Computer Science, University of Texas at Austin 1 , Austin, Texas 78712, USA

2. Department of Chemistry, University of Texas at Austin 2 , Austin, Texas 78712, USA

3. Oden Institute for Computational Engineering and Sciences, University of Texas at Austin 3 , Austin, Texas 78712, USA

Abstract

Single-molecule and single-particle tracking experiments are typically unable to resolve fine details of thermal motion at short timescales where trajectories are continuous. We show that, when a diffusive trajectory xt is sampled at finite time intervals δt, the resulting error in measuring the first passage time to a given domain can exceed the time resolution of the measurement by more than an order of magnitude. Such surprisingly large errors originate from the fact that the trajectory may enter and exit the domain while being unobserved, thereby lengthening the apparent first passage time by an amount that is larger than δt. Such systematic errors are particularly important in single-molecule studies of barrier crossing dynamics. We show that the correct first passage times, as well as other properties of the trajectories such as splitting probabilities, can be recovered via a stochastic algorithm that reintroduces unobserved first passage events probabilistically.

Funder

National Science Foundation

Welch Foundation

Adobe Systems

Publisher

AIP Publishing

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy

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