4.8 Article

Proton-electron mass ratio from laser spectroscopy of HD+ at the part-per-trillion level

期刊

SCIENCE
卷 369, 期 6508, 页码 1238-+

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AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.aba0453

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资金

  1. Netherlands Organisation for Scientific Research (FOM Programs) [FOM 13PR3109, STW Vidi 12346]
  2. European Research Council [AdG 670168, AdG 695677]
  3. COST Action [CA17113]
  4. Dutch-French bilateral Van Gogh program
  5. Russian Foundation for Basic Research [19-02-00058-a]

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Recent mass measurements of light atomic nuclei in Penning traps have indicated possible inconsistencies in closely related physical constants such as the proton-electron and deuteron-proton mass ratios. These quantities also influence the predicted vibrational spectrum of the deuterated molecular hydrogen ion (HD+) in its electronic ground state. We used Doppler-free two-photon laser spectroscopy to measure the frequency of the v = 0 -> 9 overtone transition (v, vibrational quantum number) of this spectrum with an uncertainty of 2.9 parts per trillion. By leveraging high-precision ab initio calculations, we converted our measurement to tight constraints on the proton-electron and deuteron-proton mass ratios, consistent with the most recent Penning trap determinations of these quantities. This results in a precision of 21 parts per trillion for the value of the proton-electron mass ratio.

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