Publication | Closed Access
Optimal allocation of replicas in parallel tempering simulations
265
Citations
25
References
2004
Year
Cluster ComputingEngineeringLennard-jones FluidComputer ArchitectureSimulationExperimental ThermodynamicsComputational ChemistryParallel MetaheuristicsThermodynamic ModellingAtomistic Model PolypeptideNumerical SimulationModeling And SimulationThermodynamicsParallel ComputingMulti-physics ModellingBiophysicsMassively-parallel ComputingComputer EngineeringLarge-scale SimulationHeat TransferParallel ProgrammingOptimal AllocationThermal EngineeringComputational BiophysicsMultiscale Modeling
We have studied the efficiency of parallel tempering simulations for a variety of systems including a coarse-grained protein, an atomistic model polypeptide, and the Lennard-Jones fluid. A scheme is proposed for the optimal allocation of temperatures in these simulations. The method is compared to the existing empirical approaches used for this purpose. Accuracy associated with the computed thermodynamic quantities such as specific heat is also computed and their dependence on the trial-exchange acceptance rate is reported.
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