English

$\Lambda_{\bar{\textrm{MS}}}^{(n_f=2)}$ from a momentum space analysis of the quark-antiquark static potential

High Energy Physics - Phenomenology 2014-10-01 v2 High Energy Physics - Lattice High Energy Physics - Theory

Abstract

We determine ΛMSˉ(nf=2)\Lambda_{\bar{\textrm{MS}}}^{(n_f=2)} by fitting perturbative expressions for the quark-antiquark static potential to lattice results for QCD with nf=2n_f=2 dynamical quark flavors. To this end we use the perturbative static potential at the presently best known accuracy, i.e. up to O(αs4){\cal O}(\alpha_s^4), in momentum space. The lattice potential is computed on a fine lattice with a0.042fma \approx 0.042 \, \textrm{fm} in position space. To allow for a comparison and matching of both results, the lattice potential is transformed into momentum space by means of a discrete Fourier transform. The value of ΛMSˉ(nf=2)\Lambda_{\bar{\textrm{MS}}}^{(n_f=2)} is extracted in momentum space. All sources of statistical and systematic errors are discussed. The uncertainty in the value of ΛMSˉ(nf=2)\Lambda_{\bar{\textrm{MS}}}^{(n_f=2)} is found to be smaller than that obtained in a recent position space analysis of the static potential based on the same lattice data.

Keywords

Cite

@article{arxiv.1407.7503,
  title  = {$\Lambda_{\bar{\textrm{MS}}}^{(n_f=2)}$ from a momentum space analysis of the quark-antiquark static potential},
  author = {Felix Karbstein and Antje Peters and Marc Wagner},
  journal= {arXiv preprint arXiv:1407.7503},
  year   = {2014}
}

Comments

30 pages, 6 figures; some clarifications added, matches journal version