$\pi\pi$ scattering in partially-quenched twisted-mass chiral perturbation theory
Abstract
We study pion-pion scattering in partially-quenched twisted-mass lattice QCD using chiral perturbation theory. The specific partially-quenched setup corresponds to that used in numerical lattice QCD calculations of the scattering length. We study the discretization errors proportional to , with the lattice spacing, and the errors that arise due to the use of L\"uscher's two-particle quantization condition in a theory that is not unitary. We argue that the former can be as large as , but explain how they can be systematically subtracted using a calculation of the scattering amplitude in the same partially-quenched framework. We estimate the error from the violation of unitarity to be , and argue that this error will be difficult to reduce in practice.
Keywords
Cite
@article{arxiv.2111.13975,
title = {$\pi\pi$ scattering in partially-quenched twisted-mass chiral perturbation theory},
author = {Zachary T. Draper and Stephen R. Sharpe},
journal= {arXiv preprint arXiv:2111.13975},
year = {2022}
}
Comments
14 pages, 2 figures. v2: Minor updates to match version to appear in PRD