Recent Results on Light-Meson Spectroscopy from COMPASS
Abstract
The main goal of the spectroscopy program at COMPASS is to explore the light-meson spectrum below about in diffractive production. Our flagship channel is the decay into three charged pions: , for which COMPASS has acquired the so far world's largest dataset of roughly exclusive events using an beam. Based on this dataset, we performed an extensive partial-wave analysis. In order to extract the resonance parameters of the and states that appear in the system, we performed the so far largest resonance-model fit, using Breit-Wigner resonances and non-resonant contributions. This method in combination with the high statistical precision of our measurement allows us to study ground and excited states. We have found an evidence of the and in our data, which are the first excitations of the and , respectively. The relative strength of the excited states with respect to the corresponding ground state is larger in the decay mode compared to the decay mode. We also study the spectrum of states in our data. Therefore, we simultaneously describe four waves in the resonance-model fit by using three resonances, the , the , and the . Within the limits of our model, we can conclude that the is required to describe all four waves properly.
Cite
@article{arxiv.1711.09782,
title = {Recent Results on Light-Meson Spectroscopy from COMPASS},
author = {Stefan Wallner},
journal= {arXiv preprint arXiv:1711.09782},
year = {2018}
}
Comments
6 pages, 10 figures, XVII International Conference on Hadron Spectroscopy and Structure