Accurate non-Born-Oppenheimer calculations of the complete pure vibrational spectrum of ditritium using all-particle explicitly correlated Gaussian functions

dc.contributor.authorBubin, Sergiy
dc.contributor.authorStanke, Monika
dc.contributor.authorAdamowicz, Ludwik
dc.contributor.institutionSchool of Sciences and Humanities
dc.date.accessioned2016-01-28T08:16:52Z
dc.date.available2016-01-28T08:16:52Z
dc.date.issued2014
dc.description.abstractVery accurate variational calculations of the complete pure vibrational spectrum of the ditritium (T2) molecule are performed within the framework where the Born-Oppenheimer approximation is not assumed. After separating out the center-of-mass motion from the total laboratory-frame Hamiltonian, T2 becomes a three-particle problem. States corresponding to the zero total angular momentum, which are pure vibrational states, are spherically symmetric in this framework. The wave functions of these states are expanded in terms of all-particle, one-center, spherically symmetric explicitly correlated Gaussian functions multiplied by even non-negative powers of the internuclear distance. In the calculations the total energies, the dissociation energies, and expectation values of some operators dependent on interparticle distances are determined.
dc.identifier.citationBubin, S., Stanke, M., & Adamowicz, L. (2014). Accurate non-Born-Oppenheimer calculations of the complete pure vibrational spectrum of ditritium using all-particle explicitly correlated Gaussian functions. The Journal of Chemical Physics, 140(15).
dc.identifier.urihttp://nur.nu.edu.kz/handle/123456789/1067
dc.language.isoen
dc.publisherAmerican Institute of Physics Publishing
dc.sourceThe Journal of Chemical Physics, 140(15).
dc.subjectphysics
dc.subjectnon-Born-Oppenheimer calculations
dc.titleAccurate non-Born-Oppenheimer calculations of the complete pure vibrational spectrum of ditritium using all-particle explicitly correlated Gaussian functions
dc.typeArticle

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