Estimating the two-particle $K$-matrix for multiple partial waves and decay channels from finite-volume energies
High Energy Physics - Lattice
2018-03-14 v1
Abstract
An implementation of estimating the two-to-two -matrix from finite-volume energies based on the L\"uscher formalism and involving a Hermitian matrix known as the "box matrix" is described. The method includes higher partial waves and multiple decay channels. Two fitting procedures for estimating the -matrix parameters, which properly incorporate all statistical covariances, are discussed. Formulas and software for handling total spins up to and orbital angular momenta up to are obtained for total momenta in several directions. First tests involving -meson decay to two pions include the and partial waves, and the contributions from these higher waves are found to be negligible in the elastic energy range.
Keywords
Cite
@article{arxiv.1707.05817,
title = {Estimating the two-particle $K$-matrix for multiple partial waves and decay channels from finite-volume energies},
author = {Colin Morningstar and John Bulava and Bijit Singha and Ruairí Brett and Jacob Fallica and Andrew Hanlon and Ben Hörz},
journal= {arXiv preprint arXiv:1707.05817},
year = {2018}
}
Comments
32 pages, 1 figure