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Quantum Electrodynamics Effects in Rovibrational Spectra of Molecular Hydrogen

Authors :
Krzysztof Pachucki
Grzegorz Łach
Michał Przybytek
Bogumił Jeziorski
Konrad Piszczatowski
Jacek Komasa
Source :
Journal of Chemical Theory and Computation. 7:3105-3115
Publication Year :
2011
Publisher :
American Chemical Society (ACS), 2011.

Abstract

The dissociation energies from all rovibrational levels of H2 and D2 in the ground electronic state are calculated with high accuracy by including relativistic and quantum electrodynamics (QED) effects in the nonadiabatic treatment of the nuclear motion. For D2, the obtained energies have theoretical uncertainties of 0.001 cm(-1). For H2, similar uncertainties are for the lowest levels, while for the higher ones the uncertainty increases to 0.005 cm(-1). Very good agreement with recent high-resolution measurements of the rotational v = 0 levels of H2, including states with large angular momentum J, is achieved. This agreement would not have been possible without accurate evaluation of the relativistic and QED contributions and may be viewed as the first observation of the QED effects, mainly the electron self-energy, in a molecular spectrum. For several electric quadrupole transitions, we still observe certain disagreement with experimental results, which remains to be explained.

Details

ISSN :
15499626 and 15499618
Volume :
7
Database :
OpenAIRE
Journal :
Journal of Chemical Theory and Computation
Accession number :
edsair.doi.dedup.....d7b3d91e14e430818d9b81f364a1a502
Full Text :
https://doi.org/10.1021/ct200438t