High-precision Penning-trap spectroscopy of the ground-state spin structure of HD+
arXiv:2602.17522 · doi:10.1103/vrl8-bpmz
Abstract
We present high-precision spectroscopy of the ground-state hyperfine structure of HD at 4~T. We determine the bound-electron factor, , to a relative uncertainty of 10, the most precise determination of a bound-electron factor of a molecular ion to date. The experimental value agrees with recently developed ab initio theory that now includes quantum-electrodynamical effects up to order and has reduced the theoretical uncertainty by three orders of magnitude [O. Kullie \textit{et al.}, Phys. Rev. A 112 052813 (2025)]. In addition, we extract the scalar spin-spin interaction coefficients ~=~925\,395.758(41)kHz (electron-proton) and ~=~142\,287.821(22)kHz (electron-deuteron), which show a moderate tension with another state-of-the-art theoretical prediction [M. Haidar \textit{et al.}, Phys. Rev. A 106 042815 (2022)].
10 pages, 3 figures