Stochastic-dynamical thermostats for constraints and stiff restraints

Open Access
Authors
  • J. Bajars
  • J. Frank
  • B. Leimkuhler
Publication date 2011
Journal The European Physical Journal - Special Topics
Volume | Issue number 200 | 1
Pages (from-to) 131-152
Organisations
  • Faculty of Science (FNWI) - Korteweg-de Vries Institute for Mathematics (KdVI)
Abstract
A broad array of canonical sampling methods are available for molecular simulation based on stochastic-dynamical perturbation of Newtonian dynamics, including Langevin dynamics, Stochastic Velo- city Rescaling, and methods that combine Nosé-Hoover dynamics with stochastic perturbation. In this article we discuss several stochastic-dynamical thermostats in the setting of simulating systems with holonomic constraints. The approaches described are easily implemented and facilitate the recovery of correct canonical averages with minimal disturbance of the underlying dynamics. For the purpose of illustrating our results, we examine the numerical application of these methods to a simple atomic chain, where a Fixman term is required to correct the thermodynamic ensemble.
Document type Article
Language English
Published at
Published at
Downloads
360407.pdf (Final published version)
Permalink to this page
Back