English

Higher-order corrections to spin-spin scalar interactions in HD$^+$ and H$_2^+$

Atomic Physics 2020-12-30 v1

Abstract

The largest hyperfine interaction coefficients in the hydrogen molecular ion HD+^+, i.e. the electron-proton and electron-deuteron spin-spin scalar interactions, are calculated with estimated uncertainties slightly below 1~ppm. The (Zα)2EF(Z\alpha)^2 E_F relativistic correction, for which a detailed derivation is presented, QED corrections up to the order α3ln2(α)\alpha^3 \ln^2 (\alpha) along with an estimate of higher-order terms, and nuclear structure corrections are taken into account. Improved results are also given for the electron-proton interaction coefficient in H2+_2^+, in excellent agreement with RF spectroscopy experiments. In HD+^+, a 4σ\sigma difference is found in the hyperfine splitting of the (v,L)=(0,3)(9,3)(v,L)=(0,3) \to (9,3) two-photon transition that was recently measured with high precision. The origin of this discrepancy is unknown.

Keywords

Cite

@article{arxiv.2011.02779,
  title  = {Higher-order corrections to spin-spin scalar interactions in HD$^+$ and H$_2^+$},
  author = {Jean-Philippe Karr and Mohammad Haidar and Laurent Hilico and Zhen-Xiang Zhong and Vladimir I. Korobov},
  journal= {arXiv preprint arXiv:2011.02779},
  year   = {2020}
}