articleTop 10% cited
Constant pressure molecular dynamics algorithms
The Journal of Chemical Physics · 1994 · Vol. 101(5) · pp. 4177–4189
Glenn Martyna✉(Indiana University Bloomington)Douglas J. Tobias(University of Pennsylvania)Michael L. Klein(University of Pennsylvania)
Abstract
Modularly invariant equations of motion are derived that generate the isothermal–isobaric ensemble as their phase space averages. Isotropic volume fluctuations and fully flexible simulation cells as well as a hybrid scheme that naturally combines the two motions are considered. The resulting methods are tested on two problems, a particle in a one-dimensional periodic potential and a spherical model of C60 in the solid/fluid phase.
Material Dynamics and PropertiesProtein Structure and DynamicsHigh-pressure geophysics and materialsIsotropyInvariant (physics)Constant (computer programming)Isobaric processMolecular dynamicsIsothermal processStatistical physicsDynamics (music)Phase spacePhysics
Funding
- National Science Foundation
- National Institutes of Health
Citations
5,747
FWCI
8.92
field-weighted impact
References
23
Percentile
99%
vs. same field & year
Citations per year
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References
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The Journal of Chemical Physics · 1984 · 18,423 citations
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The Journal of Chemical Physics · 1992 · 3,560 citations
Constant-pressure equations of motion
Physical review. A, General physics · 1986 · 1,007 citations
A computer simulation method for the calculation of equilibrium constants for the formation of physical clusters of molecules: Application to small water clusters
The Journal of Chemical Physics · 1982 · 3,939 citations
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