The Efficacy of Event Isotropy as an Event Shape Observable
Abstract
Event isotropy , an event shape observable that measures the distance of a final state from a spherically symmetric state, is designed for new physics signals that are far from QCD-like. Using a new technique for producing a wide variety of signals that can range from near-spherical to jetty, we compare event isotropy to other observables. We show that thrust and the parameter (and , the largest eigenvalue of the sphericity matrix) are strongly correlated and thus redundant, to a good approximation. By contrast, event isotropy adds considerable information, often serving to break degeneracies between signals that would have almost identical and distributions. Signals with broad distributions in (or ) and in separately often have much narrower distributions, and are more easily distinguished, in the plane. An intuitive, semi-analytic estimation technique clarifies why this is the case and assists with the interpretation of the distributions.
Keywords
Cite
@article{arxiv.2011.06599,
title = {The Efficacy of Event Isotropy as an Event Shape Observable},
author = {Cari Cesarotti and Matthew Reece and Matthew J. Strassler},
journal= {arXiv preprint arXiv:2011.06599},
year = {2021}
}
Comments
31 pages, 19 figures