English

Precision calculation of threshold pi^- d scattering, pi N scattering lengths, and the GMO sum rule

Nuclear Theory 2011-11-22 v2 High Energy Physics - Phenomenology Nuclear Experiment

Abstract

We use chiral perturbation theory (ChPT) to calculate the πd\pi^- d scattering length with an accuracy of a few percent, including isospin-violating corrections both in the two- and three-body sector. In particular, we provide the technical details of a recent letter, where we used data on pionic deuterium and pionic hydrogen atoms to extract the isoscalar and isovector pion-nucleon scattering lengths a+a^+ and aa^-. We study isospin-breaking contributions to the three-body part of aπda_{\pi^-d} due to mass differences, isospin violation in the πN\pi N scattering lengths, and virtual photons. This last class of effects is ostensibly infrared enhanced due to the smallness of the deuteron binding energy. However, we show that the leading virtual-photon effects that might undergo such enhancement cancel, and hence the standard ChPT counting provides a reliable estimate of isospin violation in aπda_{\pi^- d} due to virtual photons. Finally, we discuss the validity of the Goldberger-Miyazawa-Oehme sum rule in the presence of isospin violation, and use it to determine the charged-pion-nucleon coupling constant.

Keywords

Cite

@article{arxiv.1107.5509,
  title  = {Precision calculation of threshold pi^- d scattering, pi N scattering lengths, and the GMO sum rule},
  author = {V. Baru and C. Hanhart and M. Hoferichter and B. Kubis and A. Nogga and D. R. Phillips},
  journal= {arXiv preprint arXiv:1107.5509},
  year   = {2011}
}

Comments

46 pages, 7 figures. Discussion of several points expanded, references added, version published in Nuclear Physics A