English

Twisted mass QCD in the charm sector

High Energy Physics - Lattice 2008-11-26 v2

Abstract

We present preliminary results for the charm quark mass mcm_c and the DD and DsD_s mesons decay constants fDf_D and fDsf_{D_s} from a lattice QCD calculation with Nf{\rm N_f} = 2 dynamical fermions. We use the twisted mass fermionic action defined at maximal twist so that physical quantities are automatically O(a){\cal O}(a) improved. Two lattice spacings are considered. The charm quark mass has been renormalised in the RI-MOM scheme. After a matching to the \msb\msb scheme, we obtain from the simulation at a fine lattice (a0.09a \sim 0.09 fm) mc\msb(mc)=1.481±0.022±0.092m_c^{\msb}(m_c) = 1.481 \pm 0.022 \pm 0.092 GeV, fD=205±13±17f_D = 205 \pm 13 \pm 17 MeV, fDs=271±6±6f_{D_s} = 271 \pm 6 \pm 6 MeV and from the simulation at the finer lattice (a0.07a \sim 0.07 fm) mc\msb(mc)=1.474±0.041±0.132m_c^{\msb}(m_c) = 1.474 \pm 0.041 \pm 0.132 GeV, fD=230±31±8f_D = 230 \pm 31 \pm 8 MeV and fDs=264±5±8f_{D_s} = 264 \pm 5 \pm 8 MeV. We chose three renormalisation conditions to determine mcm_c: the spread between the final results contributes to the systematic error. At both lattice spacings, particularly at the finer one, the error on mcm_c is dominated by present uncertainty on the renormalisation constant ZPZ_P, which should be reduced before performing a reliable continuum limit.

Keywords

Cite

@article{arxiv.0710.1414,
  title  = {Twisted mass QCD in the charm sector},
  author = {B. Blossier and G. Herdoiza and S. Simula},
  journal= {arXiv preprint arXiv:0710.1414},
  year   = {2008}
}

Comments

7 pages, 5 figures, talk given at The XXV International Symposium on Lattice Field Theory, July 30 - August 4 2007, Regensburg

R2 v1 2026-06-21T09:27:55.958Z