paper

Extraction of the Subsystem in Diffractively Produced at COMPASS

arXiv:1609.08514 · doi:10.7566/JPSCP.13.020028

Abstract

The COMPASS experiment at CERN has collected a large data sample of 50 million diffractively produced events using a GeV negatively charged hadron beam. The partial-wave analysis (PWA) of these high-precision data reveals previously unseen details. The PWA, which is currently limited by systematic uncertainties, is based on an isobar model, where multi-particle decays are described as subsequent two-body decays and where a prior-knowledge parametrization for the intermediate two-pion resonances has to be assumed -- usually a Breit-Wigner amplitude -- thus increasing systematic uncertainties, due to the concrete choice of the parametrization. We present a novel method, which allows to extract isobar amplitudes directly from the data in a less biased way. The focus lies on the scalar subsystem, where a previous analysis found a signal for a new axial-vector state decaying into .

Proceedings for the MENU 2016 conference from 25 July 2016 to 30 July 2016, 6 pages, 15 figures

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