Static QCD Potential at r < 1/Lambda_QCD: Perturbative expansion and operator-product expansion
Abstract
We analyze the static QCD potential V_QCD(r) in the distance region 0.1 fm < r < 1 fm using perturbative QCD and OPE as basic theoretical tools. We assemble theoretical developments up to date and perform a solid and accurate analysis. The analysis consists of 3 major steps: (I) We study large-order behavior of the perturbative series of V_QCD(r) analytically. (II) In the frame of OPE, we define two types of renormalization schemes for the leading Wilson coefficient. (III) We compare numerically perturbative predictions of the Wilson coefficient and lattice computations of V_QCD(r). We perform fits to simultaneously determine non-perturbative contribution and the relation between lattice scale and Lambda_MSbar. (Short version)
Cite
@article{arxiv.hep-ph/0505034,
title = {Static QCD Potential at r < 1/Lambda_QCD: Perturbative expansion and operator-product expansion},
author = {Y. Sumino},
journal= {arXiv preprint arXiv:hep-ph/0505034},
year = {2008}
}
Comments
60 pages, 28 figures