Comparison of path integral molecular dynamics methods for the infrared absorption spectrum of liquid water

The ring polymer molecular dynamics (RPMD) and partially adiabatic centroid molecular dynamics (PA-CMD) methods are compared and contrasted in an application to the infrared absorption spectrum of a recently parametrized flexible, polarizable, Thole-type potential energy model for liquid water. Both...

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Veröffentlicht in:The Journal of chemical physics 2008-08, Vol.129 (7), p.074501-074501-8
Hauptverfasser: Habershon, Scott, Fanourgakis, George S., Manolopoulos, David E.
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Sprache:eng
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Zusammenfassung:The ring polymer molecular dynamics (RPMD) and partially adiabatic centroid molecular dynamics (PA-CMD) methods are compared and contrasted in an application to the infrared absorption spectrum of a recently parametrized flexible, polarizable, Thole-type potential energy model for liquid water. Both methods predict very similar spectra in the low-frequency librational and intramolecular bending region at wavenumbers below 2500   cm − 1 . However, the RPMD spectrum is contaminated in the high-frequency O-H stretching region by contributions from the internal vibrational modes of the ring polymer. This problem is avoided in the PA-CMD method, which adjusts the elements of the Parrinello-Rahman mass matrix so as to shift the frequencies of these vibrational modes beyond the spectral range of interest. PA-CMD does not require any more computational effort than RPMD and it is clearly the better of the two methods for simulating vibrational spectra.
ISSN:0021-9606
1089-7690
DOI:10.1063/1.2968555