The pion-nucleon $\sigma$ term from pionic atoms
Abstract
Earlier work suggested that the in-medium threshold isovector amplitude gets renormalized in pionic atoms by about 30% away from its free-space value, relating such renormalization to the leading low-density decrease of the in-medium quark condensate and the pion decay constant in terms of the pion-nucleon term . Accepting the validity of this approach, we extracted from a large-scale fit of pionic-atom level shift and width data across the periodic table. Our fitted value MeV is robust with respect to variation of interaction terms other than the isovector -wave term with which was associated. Higher order corrections to the leading order in density involve some cancellations, suggesting thereby only a few percent overall systematic uncertainty. The value of derived here agrees with values obtained in several recent studies based on near-threshold phenomenology, but sharply disagrees with values obtained in recent direct lattice QCD calculations.
Cite
@article{arxiv.1901.03130,
title = {The pion-nucleon $\sigma$ term from pionic atoms},
author = {E. Friedman and A. Gal},
journal= {arXiv preprint arXiv:1901.03130},
year = {2019}
}
Comments
16 pages, 3 figures, some discussion and references added in v2; matches published version