Light-Quark Resonances at COMPASS
Abstract
The main goal of the spectroscopy program at COMPASS is to explore the light-meson spectrum in the mass range below about using diffractive dissociation reactions. Our flagship channel is the production of three charged pions in the reaction: , for which COMPASS has acquired the so far world's largest dataset of roughly exclusive events using an beam. In order to extract the parameters of the and resonances that appear in the system, we performed the so far most comprehensive resonance-model fit, using Breit-Wigner parametrizations. This method in combination with the high statistical precision of our data allows us to study ground and excited states. We study the resonance in the and decays. In addition to the ground state resonance , we have found evidence for the . We also study the spectrum of states by simultaneously describing four waves using three resonances, the , the , and the . Using a novel analysis approach, where the resonance-model fit is performed simultaneously in narrow bins of the squared four-momentum transfer between the beam pion and the target proton, allows us to study the dependence of resonant and non-resonant components included in our model. We observe that for most of the partial waves, the non-resonant components show a steeper spectrum compared to the resonances and that the spectrum of most of the resonances becomes shallower with increasing resonance mass. We also study the dependence of the relative phases between resonance components. The pattern we observe is consistent with a common production mechanism of these states.
Cite
@article{arxiv.1810.10805,
title = {Light-Quark Resonances at COMPASS},
author = {Stefan Wallner},
journal= {arXiv preprint arXiv:1810.10805},
year = {2022}
}