Lowest 2S Electronic Excitations of the Boron Atom

dc.contributor.authorBubin, Sergiy
dc.contributor.authorAdamowicz, Ludwik
dc.date.accessioned2017-02-22T06:04:41Z
dc.date.available2017-02-22T06:04:41Z
dc.date.issued2017-01
dc.description.abstractA theoretical ab initio approach for calculating bound states of small atoms is developed and implemented. The approach is based on finite-nuclear-mass [non-Born-Oppenheimer (non-BO)] nonrelativistic variational calculations performed with all-particle explicitly correlated Gaussian functions and includes the leading relativistic and quantum electrodynamics energy corrections determined using the non-BO wave functions. The approach is applied to determine the total and transition energies for the lowest four 2S electronic excitations of the boron atom. The transition energies agree with the available experimental values within 0.2–0.3 cm−1. Previously, such accuracy was achieved for three- and four-electron systemsru_RU
dc.identifier.citationSergiy Bubin, Ludwik Adamowicz; 2017; Lowest 2S Electronic Excitations of the Boron Atom; PHYSICAL REVIEW LETTERS; http://nur.nu.edu.kz/handle/123456789/2332ru_RU
dc.identifier.urihttp://nur.nu.edu.kz/handle/123456789/2332
dc.language.isoenru_RU
dc.publisherPHYSICAL REVIEW LETTERSru_RU
dc.rightsAttribution-NonCommercial-ShareAlike 3.0 United States*
dc.rights.urihttp://creativecommons.org/licenses/by-nc-sa/3.0/us/*
dc.subjectElectronic Excitationsru_RU
dc.subjectBoron Atomru_RU
dc.titleLowest 2S Electronic Excitations of the Boron Atomru_RU
dc.typeArticleru_RU

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