Towards a high precision calculation for the pion-nucleus scattering lengths
S. Liebig, V. Baru, F. Ballout, C. Hanhart, A. Nogga

TL;DR
This paper develops a high-precision theoretical framework for calculating pion-nucleus scattering lengths, focusing on few-nucleon contributions and power counting, with implications for extracting fundamental scattering parameters.
Contribution
It introduces a controlled calculation method for pion-nucleus scattering lengths, analyzing multi-nucleon effects and testing power counting schemes like Weinberg's in this context.
Findings
Achieves a few percent accuracy for isoscalar nuclei scattering lengths.
Finds a suppression factor of 5 in N- vs. (N+1)-nucleon operator contributions.
Demonstrates limitations of heavy pion effective field theory for certain calculations.
Abstract
We calculate the leading isospin conserving few-nucleon contributions to pion scattering on H, He, and He. We demonstrate that the strong contributions to the pion-nucleus scattering lengths can be controlled theoretically to an accuracy of a few percent for isoscalar nuclei and of 10% for isovector nuclei. In particular, we find the -He scattering length to be where the uncertainties are due to ambiguities in the -N scattering lengths and few-nucleon effects, respectively. To establish this accuracy we need to identify a suitable power counting for pion-nucleus scattering. For this purpose we study the dependence of the two-nucleon contributions to the scattering length on the binding energy of H. Furthermore, we investigate the relative size of the leading two-, three-, and four-nucleon contributions. For the…
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