Light isovector resonances in $\pi^- p \to \pi^-\pi^-\pi^+ p$ at 190 GeV/${\it c}$
M. Aghasyan, M.G. Alexeev, G.D. Alexeev, A. Amoroso, V. Andrieux, N.V., Anfimov, V. Anosov, A. Antoshkin, K. Augsten, W. Augustyniak, A., Austregesilo, C.D.R. Azevedo, B. Badelek, F. Balestra, M. Ball, J. Barth, R., Beck, Y. Bedfer, J. Bernhard, K. Bicker, E. R. Bielert

TL;DR
This study performs a detailed resonance-model fit to three-pion production data from a 190 GeV/c pion beam, identifying and characterizing multiple light-meson resonances, including their parameters and production mechanisms.
Contribution
It introduces a comprehensive resonance-model analysis of $ ho o ext{3-pion}$ states with novel measurements of $t'$ dependence of resonance intensities and phases, confirming common production mechanisms.
Findings
Measured resonance parameters (mass and width) for multiple light-meson states.
First measurement of the $t'$ dependence of the $ ho(770) o ext{3-pion}$ decay.
Confirmed common production mechanism via Pomeron exchange across resonances.
Abstract
We have performed the most comprehensive resonance-model fit of states using the results of our previously published partial-wave analysis (PWA) of a large data set of diffractive-dissociation events from the reaction with a 190 GeV/ pion beam. The PWA results, which were obtained in 100 bins of three-pion mass, GeV/, and simultaneously in 11 bins of the reduced four-momentum transfer squared, GeV, are subjected to a resonance-model fit using Breit-Wigner amplitudes to simultaneously describe a subset of 14 selected waves using 11 isovector light-meson states with , , , , , and spin-exotic quantum numbers. The model contains the well-known resonances , , , ,…
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