English

Strong coupling constant and heavy quark masses in 2+1 flavor QCD

High Energy Physics - Lattice 2019-09-10 v2 High Energy Physics - Phenomenology

Abstract

We present a determination of the strong coupling constant and heavy quark masses in (2+1)-flavor QCD using lattice calculations of the moments of the pseudo-scalar quarkonium correlators at several values of the heavy valence quark mass with Highly Improved Staggered Quark (HISQ) action. We determine the strong coupling constant in the MS\overline{MS} scheme at four low-energy scales corresponding to mcm_c, 1.5mc1.5m_c, 2mc2m_c, and 3mc3m_c, with mcm_c being the charm quark mass. The novel feature of our analysis that up to eleven lattice spacings are used in the continuum extrapolations, with the smallest lattice spacing being 0.0250.025 fm. We obtain ΛMSnf=3=298±16\Lambda_{\overline{MS}}^{n_f=3}=298 \pm 16 MeV, which is equivalent to αs(μ=MZ,nf=5)=0.1159(12)\alpha_s(\mu=M_Z,n_f=5)=0.1159(12). For the charm and bottom quark masses in the MS\overline{MS} scheme, we obtain: mc(μ=mc,nf=4)=1.265(10)m_c(\mu=m_c,n_f=4)=1.265(10) GeV and mb(μ=mb,nf=5)=4.188(37)m_b(\mu=m_b,n_f=5)=4.188(37) GeV.

Keywords

Cite

@article{arxiv.1901.06424,
  title  = {Strong coupling constant and heavy quark masses in 2+1 flavor QCD},
  author = {P. Petreczky and J. H. Weber},
  journal= {arXiv preprint arXiv:1901.06424},
  year   = {2019}
}

Comments

32 pages, 10 figures, 18 Tables