English

The Efficacy of Event Isotropy as an Event Shape Observable

High Energy Physics - Phenomenology 2021-08-18 v1

Abstract

Event isotropy Isph\mathcal{I}^\text{sph}, 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 TT and the CC parameter (and λmax\lambda_\text{max}, 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 TT and CC distributions. Signals with broad distributions in TT (or λmax\lambda_\text{max}) and in Isph\mathcal{I}^\text{sph} separately often have much narrower distributions, and are more easily distinguished, in the (Isph,λmax)({\mathcal{I}^\text{sph}},\lambda_\text{max}) 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