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A molecular dynamics method for simulations in the canonical ensemble

Molecular Physics · 1984 · Vol. 52(2) · pp. 255–268
Shūichi Nosé

Abstract

A molecular dynamics simulation method which can generate configurations belonging to the canonical (T, V, N) ensemble or the constant temperature constant pressure (T, P, N) ensemble, is proposed. The physical system of interest consists of N particles (f degrees of freedom), to which an external, macroscopic variable and its conjugate momentum are added. This device allows the total energy of the physical system to fluctuate. The equilibrium distribution of the energy coincides with the canonical distribution both in momentum and in coordinate space. The method is tested for an atomic fluid (Ar) and works well.

Advanced Thermodynamics and Statistical MechanicsMaterial Dynamics and PropertiesSpectroscopy and Quantum Chemical StudiesCanonical ensembleMolecular dynamicsMicrocanonical ensembleDegrees of freedom (physics and chemistry)Momentum (technical analysis)Constant (computer programming)PhysicsStatistical ensembleGrand canonical ensembleDistribution (mathematics)
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References
Constant pressure molecular dynamics for molecular systems
Molecular Physics · 1983 · 3,289 citations
Polymorphic transitions in single crystals: A new molecular dynamics method
Journal of Applied Physics · 1981 · 19,685 citations
Molecular dynamics simulations at constant pressure and/or temperature
The Journal of Chemical Physics · 1980 · 5,653 citations
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