arXiv · 2011.02779
Higher-order corrections to spin-spin scalar interactions in HD$^+$ and H$_2^+$
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 $(Zα)^2 E_F$ relativistic correction, for which a detailed derivation is presented, QED corrections up to the order $α^3 \ln^2 (α)$ 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 H$_2^+$, in excellent agreement with RF spectroscopy experiments. In HD$^+$, a 4$σ$ difference is found in the hyperfine splitting of the $(v,L)=(0,3) \to (9,3)$ two-photon transition that was recently measured with high precision. The origin of this discrepancy is unknown.
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Jean-Philippe Karr, Mohammad Haidar, Laurent Hilico, Zhen-Xiang Zhong, Vladimir I. Korobov. 2020-11-05. Higher-order corrections to spin-spin scalar interactions in HD$^+$ and H$_2^+$. https://doi.org/10.1103/physreva.102.052827
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