Variational calculation of macrostate transition rates
- 1 August 1998
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 109 (5) , 1670-1686
- https://doi.org/10.1063/1.476882
Abstract
We develop the macrostate variational method (MVM) for computing reaction rates of diffusive conformational transitions in multidimensional systems by a variational coarse-grained “macrostate” decomposition of the Smoluchowski equation. MVM uses multidimensional Gaussian packets to identify and focus computational effort on the “transition region,” a localized, self-consistently determined region in conformational space positioned roughly between the macrostates. It also determines the “transition direction” which optimally specifies the projected potential of mean force for mean first-passage time calculations. MVM is complementary to variational transition state theory in that it can efficiently solve multidimensional problems but does not accommodate memory-friction effects. It has been tested on model 1- and 2-dimensional potentials and on the 12-dimensional conformational transition between the isoforms of a microcluster of six-atoms having only van der Waals interactions. Comparison with Brownian dynamics calculations shows that MVM obtains equivalent results at a fraction of the computational cost.Keywords
This publication has 54 references indexed in Scilit:
- Brownian motion in a field of force and the diffusion model of chemical reactionsPublished by Elsevier ,2004
- Competitive adsorption of xenon and argon in zeolite NaA. 129Xe nuclear magnetic resonance studies and grand canonical Monte Carlo simulationsThe Journal of Chemical Physics, 1996
- Electrostatics and diffusion of molecules in solution: simulations with the University of Houston Brownian Dynamics programComputer Physics Communications, 1995
- Hierarchical characterization of energy landscapes using Gaussian packet statesThe Journal of Chemical Physics, 1994
- Variational transition state theory for the CI−+CH3Cl SN2 exchange reaction in waterThe Journal of Chemical Physics, 1994
- A Comparision of Methods for Computing Transition Rates from Molecular Dynamics SimulationMolecular Simulation, 1994
- A parallel build-up algorithm for global energy minimizations of molecular clusters using effective energy simulated annealingJournal of Global Optimization, 1994
- Isotropic effective energy simulated annealing searches for low energy molecular cluster statesComputational Optimization and Applications, 1993
- Dynamics of Conformational Transitions in PolymersScience, 1984
- A soluble model for diffusion in a bistable potentialJournal of Statistical Physics, 1977