Shell model: Difference between revisions
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The ''' | The '''shell model''' is a method for treating polarisable ions. | ||
==Relaxed shell model== | |||
==References== | In the relaxed shell model the shell has zero mass. | ||
====References==== | |||
==Dynamical shell model== | |||
The dynamical shell model is also known as the adiabatic shell model. | |||
====References==== | |||
#[http://dx.doi.org/10.1088/0953-8984/5/8/005 P J D Lindan and M J Gillan "Shell-model molecular dynamics simulation of superionic conduction in CaF2", Journal of Physics Condensed Matter '''5''' pp. 1019-1030 (1993)] | #[http://dx.doi.org/10.1088/0953-8984/5/8/005 P J D Lindan and M J Gillan "Shell-model molecular dynamics simulation of superionic conduction in CaF2", Journal of Physics Condensed Matter '''5''' pp. 1019-1030 (1993)] | ||
#[http://dx.doi.org/10.1088/0953-8984/5/8/006 P J Mitchell and D Fincham "Shell model simulations by adiabatic dynamics", Journal of Physics Condensed Matter '''5''' pp. 1031-1038 (1993)] | #[http://dx.doi.org/10.1088/0953-8984/5/8/006 P J Mitchell and D Fincham "Shell model simulations by adiabatic dynamics", Journal of Physics Condensed Matter '''5''' pp. 1031-1038 (1993)] | ||
==References== | |||
#[http://dx.doi.org/10.1016/0375-9601(74)90911-6 G. Jacucci, I. R. McDonald and K. Singer "Introduction of the shell model of ionic polarizability into molecular dynamics calculations", Physics Letters A '''50''' pp. 141-143 (1974)] | |||
[[category: models]] | [[category: models]] | ||
[[category: electrostatics]] |
Revision as of 16:45, 15 January 2008
The shell model is a method for treating polarisable ions.
Relaxed shell model
In the relaxed shell model the shell has zero mass.
References
Dynamical shell model
The dynamical shell model is also known as the adiabatic shell model.
References
- P J D Lindan and M J Gillan "Shell-model molecular dynamics simulation of superionic conduction in CaF2", Journal of Physics Condensed Matter 5 pp. 1019-1030 (1993)
- P J Mitchell and D Fincham "Shell model simulations by adiabatic dynamics", Journal of Physics Condensed Matter 5 pp. 1031-1038 (1993)