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Preserving the Boltzmann ensemble in replica-exchange molecular dynamics.

Publication ,  Journal Article
Cooke, B; Schmidler, SC
Published in: The Journal of chemical physics
October 2008

We consider the convergence behavior of replica-exchange molecular dynamics (REMD) [Sugita and Okamoto, Chem. Phys. Lett. 314, 141 (1999)] based on properties of the numerical integrators in the underlying isothermal molecular dynamics (MD) simulations. We show that a variety of deterministic algorithms favored by molecular dynamics practitioners for constant-temperature simulation of biomolecules fail either to be measure invariant or irreducible, and are therefore not ergodic. We then show that REMD using these algorithms also fails to be ergodic. As a result, the entire configuration space may not be explored even in an infinitely long simulation, and the simulation may not converge to the desired equilibrium Boltzmann ensemble. Moreover, our analysis shows that for initial configurations with unfavorable energy, it may be impossible for the system to reach a region surrounding the minimum energy configuration. We demonstrate these failures of REMD algorithms for three small systems: a Gaussian distribution (simple harmonic oscillator dynamics), a bimodal mixture of Gaussians distribution, and the alanine dipeptide. Examination of the resulting phase plots and equilibrium configuration densities indicates significant errors in the ensemble generated by REMD simulation. We describe a simple modification to address these failures based on a stochastic hybrid Monte Carlo correction, and prove that this is ergodic.

Duke Scholars

Published In

The Journal of chemical physics

DOI

EISSN

1089-7690

ISSN

0021-9606

Publication Date

October 2008

Volume

129

Issue

16

Start / End Page

164112

Related Subject Headings

  • Thermodynamics
  • Temperature
  • Protein Conformation
  • Monte Carlo Method
  • Models, Molecular
  • Markov Chains
  • Dipeptides
  • Chemical Physics
  • Algorithms
  • Alanine
 

Citation

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Cooke, B., & Schmidler, S. C. (2008). Preserving the Boltzmann ensemble in replica-exchange molecular dynamics. The Journal of Chemical Physics, 129(16), 164112. https://doi.org/10.1063/1.2989802
Cooke, Ben, and Scott C. Schmidler. “Preserving the Boltzmann ensemble in replica-exchange molecular dynamics.The Journal of Chemical Physics 129, no. 16 (October 2008): 164112. https://doi.org/10.1063/1.2989802.
Cooke B, Schmidler SC. Preserving the Boltzmann ensemble in replica-exchange molecular dynamics. The Journal of chemical physics. 2008 Oct;129(16):164112.
Cooke, Ben, and Scott C. Schmidler. “Preserving the Boltzmann ensemble in replica-exchange molecular dynamics.The Journal of Chemical Physics, vol. 129, no. 16, Oct. 2008, p. 164112. Epmc, doi:10.1063/1.2989802.
Cooke B, Schmidler SC. Preserving the Boltzmann ensemble in replica-exchange molecular dynamics. The Journal of chemical physics. 2008 Oct;129(16):164112.

Published In

The Journal of chemical physics

DOI

EISSN

1089-7690

ISSN

0021-9606

Publication Date

October 2008

Volume

129

Issue

16

Start / End Page

164112

Related Subject Headings

  • Thermodynamics
  • Temperature
  • Protein Conformation
  • Monte Carlo Method
  • Models, Molecular
  • Markov Chains
  • Dipeptides
  • Chemical Physics
  • Algorithms
  • Alanine