Chiral effective field theory beyond the power-counting regime
Abstract
Novel techniques are presented, which identify the chiral power-counting regime (PCR), and realize the existence of an intrinsic energy scale embedded in lattice QCD results that extend outside the PCR. The nucleon mass is considered as a benchmark for illustrating this new approach. Using finite-range regularization, an optimal regularization scale can be extracted from lattice simulation results by analyzing the renormalization of the low energy coefficients. The optimal scale allows a description of lattice simulation results that extend beyond the PCR by quantifying and thus handling any scheme-dependence. Preliminary results for the nucleon magnetic moment are also examined, and a consistent optimal regularization scale is obtained. This indicates the existence of an intrinsic scale corresponding to the finite size of the source of the pion cloud.
Cite
@article{arxiv.1102.3735,
title = {Chiral effective field theory beyond the power-counting regime},
author = {Jonathan M. M. Hall and Derek B. Leinweber and Ross D. Young},
journal= {arXiv preprint arXiv:1102.3735},
year = {2015}
}
Comments
6 pages, 4 figures, conference