Literature DB >> 24014889

Transition-Path Theory Calculations on Non-Uniform Meshes in Two and Three Dimensions using Finite Elements.

Mauro Lapelosa1, Cameron F Abrams.   

Abstract

Rare events between states in complex systems are fundamental in many scientific fields and can be studied by building reaction pathways. A theoretical framework to analyze reaction pathways is provided by transition-path theory (TPT). The central object in TPT is the committor function, which is found by solution of the backward-Kolmogorov equation on a given potential. Once determined, the committor can be used to calculate reactive fluxes and rates, among other important quantities. We demonstrate here that the committor can be calculated using the method of finite elements on non-uniform meshes. We show that this approach makes it feasible to perform TPT calculations on 3D potentials because it requires many fewer degrees of freedom than a regular-mesh finite-difference approach. In various illustrative 2D and 3D problems, we calculate the committor function and reaction rates at different temperatures, and we discuss effects of temperatures and simple entropic barriers on the structure of the committor and the reaction rate constants.

Entities:  

Keywords:  committor function; rare events; reaction kinetics

Year:  2013        PMID: 24014889      PMCID: PMC3760196          DOI: 10.1016/j.cpc.2013.05.017

Source DB:  PubMed          Journal:  Comput Phys Commun        ISSN: 0010-4655            Impact factor:   4.390


  6 in total

1.  Transition path sampling: throwing ropes over rough mountain passes, in the dark.

Authors:  Peter G Bolhuis; David Chandler; Christoph Dellago; Phillip L Geissler
Journal:  Annu Rev Phys Chem       Date:  2001-10-04       Impact factor: 12.703

Review 2.  Long time dynamics of complex systems.

Authors:  Ron Elber; Avijit Ghosh; Alfredo Cárdenas
Journal:  Acc Chem Res       Date:  2002-06       Impact factor: 22.384

3.  From transition paths to transition states and rate coefficients.

Authors:  Gerhard Hummer
Journal:  J Chem Phys       Date:  2004-01-08       Impact factor: 3.488

4.  Illustration of transition path theory on a collection of simple examples.

Authors:  Philipp Metzner; Christof Schütte; Eric Vanden-Eijnden
Journal:  J Chem Phys       Date:  2006-08-28       Impact factor: 3.488

5.  Transition-path theory and path-finding algorithms for the study of rare events.

Authors:  Weinan E; Eric Vanden-Eijnden
Journal:  Annu Rev Phys Chem       Date:  2010       Impact factor: 12.703

6.  A computational study of water and CO migration sites and channels inside myoglobin.

Authors:  Mauro Lapelosa; Cameron F Abrams
Journal:  J Chem Theory Comput       Date:  2013-02-12       Impact factor: 6.006

  6 in total
  1 in total

1.  Galerkin approximation of dynamical quantities using trajectory data.

Authors:  Erik H Thiede; Dimitrios Giannakis; Aaron R Dinner; Jonathan Weare
Journal:  J Chem Phys       Date:  2019-06-28       Impact factor: 3.488

  1 in total

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