English

The deuteron-radius puzzle is alive: A new analysis of nuclear structure uncertainties

Nuclear Theory 2018-06-12 v2

Abstract

To shed light on the deuteron radius puzzle we analyze the theoretical uncertainties of the nuclear structure corrections to the Lamb shift in muonic deuterium. We find that the discrepancy between the calculated two-photon exchange correction and the corresponding experimentally inferred value by Pohl et al. [1] remain. The present result is consistent with our previous estimate, although the discrepancy is reduced from 2.6 σ\sigma to 2 σ\sigma. The error analysis includes statistic as well as systematic uncertainties stemming from the use of nucleon-nucleon interactions derived from chiral effective field theory at various orders. We therefore conclude that nuclear theory uncertainty is more likely not the source of the discrepancy.

Keywords

Cite

@article{arxiv.1711.01199,
  title  = {The deuteron-radius puzzle is alive: A new analysis of nuclear structure uncertainties},
  author = {Oscar Javier Hernandez and Andreas Ekström and Nir Nevo Dinur and Chen Ji and Sonia Bacca and Nir Barnea},
  journal= {arXiv preprint arXiv:1711.01199},
  year   = {2018}
}

Comments

updated according to referee's comments