Hyperfine structure of rovibrational quadrupole transitions in HD
Hubert Jóźwiak, Hubert Cybulski, Piotr Wcisło
Abstract
Open-access reader
Hubert Jóźwiak, Hubert Cybulski, Piotr Wcisło
Abstract
Open-access reader
We perform a theoretical investigation of hyperfine structure of all rovibrational quadrupole transitions in the ground electronic 1Σ+ state of the HD molecule. We determine positions and intensities of 185 631 hyperfine components of 7 251 quadrupole rovibrational transitions from the O, Q and S branches. Moreover, we provide a list of hyperfine splittings of all bound states in the six isotopologues of hydrogen which we considered in previous papers. The results reported here are necessary for a reliable interpretation of accurate experimental studies of rovibrational transition frequencies in the HD isotopologue, which are useful for tests of quantum electrodynamics for molecules and searches for new physics beyond the Standard Model.
OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
We perform a theoretical investigation of hyperfine structure of all rovibrational quadrupole transitions in the ground electronic 1Σ+ state of the HD molecule. We determine positions and intensities of 185 631 hyperfine components of 7 251 quadrupole rovibrational transitions from the O, Q and S branches. Moreover, we provide a list of hyperfine splittings of all bound states in the six isotopologues of hydrogen which we considered in previous papers. The results reported here are necessary for a reliable interpretation of accurate experimental studies of rovibrational transition frequencies in the HD isotopologue, which are useful for tests of quantum electrodynamics for molecules and searches for new physics beyond the Standard Model.
Key concepts: Rotational–vibrational spectroscopy, Hyperfine structure, Quadrupole, Atomic physics, Physics, Astrophysics, Excited state