English

Measurement of the $D^*(2010)^+ - D^+$ mass difference

High Energy Physics - Experiment 2017-11-22 v2

Abstract

We measure the mass difference, Δm+\Delta m_+, between the D(2010)+D^{*}(2010)^+ and the D+D^+ using the decay chain D(2010)+D+π0D^{*}(2010)^+\to D^+ \pi^0 with D+Kπ+π+D^+\to K^-\pi^+\pi^+. The data were recorded with the BABAR detector at center-of-mass energies at and near the Υ(4S)\Upsilon(4S) resonance, and correspond to an integrated luminosity of approximately 468 fb1{\rm fb}^{-1}. We measure Δm+=(140601.0±6.8[stat]±12.9[syst])\Delta m_+ = \left(140\,601.0 \pm 6.8[{\rm stat}] \pm 12.9[{\rm syst}]\right) keV. We combine this result with a previous BABAR measurement of Δm0m(D(2010)+)m(D0)\Delta m_0\equiv m(D^{*}(2010)^+) - m (D^0) to obtain ΔmD=m(D+)m(D0)=(4824.9±6.8[stat]±12.9[syst])\Delta m_D = m(D^+) - m(D^0) = \left(4\,824.9 \pm 6.8[{\rm stat}] \pm 12.9[{\rm syst}]\right) keV. These results are compatible with and approximately five times more precise than the Particle Data Group averages.

Keywords

Cite

@article{arxiv.1707.09328,
  title  = {Measurement of the $D^*(2010)^+ - D^+$ mass difference},
  author = {The BaBar Collaboration},
  journal= {arXiv preprint arXiv:1707.09328},
  year   = {2017}
}

Comments

7 pages, 3 figures, submitted to Physical Review Letters