English

Short-distance matrix elements for $D^0$-meson mixing for $N_f=2+1$ lattice QCD

High Energy Physics - Lattice 2018-03-05 v2 High Energy Physics - Experiment High Energy Physics - Phenomenology

Abstract

We calculate in three-flavor lattice QCD the short-distance hadronic matrix elements of all five ΔC=2\Delta C=2 four-fermion operators that contribute to neutral DD-meson mixing both in and beyond the Standard Model. We use the MILC Collaboration's Nf=2+1N_f = 2+1 lattice gauge-field configurations generated with asqtad-improved staggered sea quarks. We also employ the asqtad action for the valence light quarks and use the clover action with the Fermilab interpretation for the charm quark. We analyze a large set of ensembles with pions as light as Mπ180M_\pi \approx 180 MeV and lattice spacings as fine as a0.045a\approx 0.045 fm, thereby enabling good control over the extrapolation to the physical pion mass and continuum limit. We obtain for the matrix elements in the MS\overline{\text{MS}}-NDR scheme using the choice of evanescent operators proposed by Beneke \emph{et al.}, evaluated at 3 GeV, D0OiDˉ0={0.0805(55)(16),0.1561(70)(31),0.0464(31)(9),0.2747(129)(55),0.1035(71)(21)} GeV4\langle D^0|\mathcal{O}_i|\bar{D}^0 \rangle = \{0.0805(55)(16), -0.1561(70)(31), 0.0464(31)(9), 0.2747(129)(55), 0.1035(71)(21)\}~\text{GeV}^4 (i=1i=1--5). The errors shown are from statistics and lattice systematics, and the omission of charmed sea quarks, respectively. To illustrate the utility of our matrix-element results, we place bounds on the scale of CP-violating new physics in D0D^0~mixing, finding lower limits of about 10--50×103\times 10^3 TeV for couplings of O(1)\mathrm{O}(1). To enable our results to be employed in more sophisticated or model-specific phenomenological studies, we provide the correlations among our matrix-element results. For convenience, we also present numerical results in the other commonly-used scheme of Buras, Misiak, and Urban.

Keywords

Cite

@article{arxiv.1706.04622,
  title  = {Short-distance matrix elements for $D^0$-meson mixing for $N_f=2+1$ lattice QCD},
  author = {A. Bazavov and C. Bernard and C. M. Bouchard and C. C. Chang and C. DeTar and D. Du and A. X. El-Khadra and E. D. Freeland and E. Gámiz and Steven Gottlieb and U. M. Heller and A. S. Kronfeld and J. Laiho and P. B. Mackenzie and E. T. Neil and J. N. Simone and R. Sugar and D. Toussaint and R. S. Van de Water and R. Zhou},
  journal= {arXiv preprint arXiv:1706.04622},
  year   = {2018}
}

Comments

Published version, 42 pages, 18 figures