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| '''Mass-stat''' | {{stub-general}} | ||
| A '''Mass-stat''' can be used to introduce or remove particles during a [[molecular dynamics]] calculation. | |||
| *[[ | ==USHER mass-stat== | ||
| <ref>[http://dx.doi.org/10.1063/1.1579475 Rafael Delgado-Buscalioni and Peter V. Coveney "USHER: An algorithm for particle insertion in dense fluids", Journal of Chemical Physics '''119''' pp. 978-987 (2003)]</ref><ref>[http://dx.doi.org/10.1063/1.1835957  Gianni De Fabritiis, Rafael Delgado-Buscalioni and Peter V. Coveney "Energy controlled insertion of polar molecules in dense fluids", Journal of Chemical Physics '''121''' 12139 (2004)]</ref> | |||
| ==FADE mass-stat== | |||
| <ref>[http://dx.doi.org/10.1063/1.4865337  Matthew K. Borg, Duncan A. Lockerby and Jason M. Reese "The FADE mass-stat: A technique for inserting or deleting particles in molecular dynamics simulations", Journal of Chemical Physics '''140''' 074110 (2014)]</ref> | |||
| ==See also== | |||
| *[[Grand canonical Monte Carlo]] | |||
| ==References== | |||
| <references/> | |||
| [[category: Molecular dynamics]] | [[category: Molecular dynamics]] | ||
Revision as of 15:18, 1 April 2014
A Mass-stat can be used to introduce or remove particles during a molecular dynamics calculation.
USHER mass-stat
FADE mass-stat
See also
References
- ↑ Rafael Delgado-Buscalioni and Peter V. Coveney "USHER: An algorithm for particle insertion in dense fluids", Journal of Chemical Physics 119 pp. 978-987 (2003)
- ↑ Gianni De Fabritiis, Rafael Delgado-Buscalioni and Peter V. Coveney "Energy controlled insertion of polar molecules in dense fluids", Journal of Chemical Physics 121 12139 (2004)
- ↑ Matthew K. Borg, Duncan A. Lockerby and Jason M. Reese "The FADE mass-stat: A technique for inserting or deleting particles in molecular dynamics simulations", Journal of Chemical Physics 140 074110 (2014)
