English

Resolving Combinatorial Ambiguities in Dilepton $t\bar t$ Event Topologies with Constrained $M_2$ Variables

High Energy Physics - Phenomenology 2017-10-18 v1

Abstract

We advocate the use of on-shell constrained M2M_2 variables in order to mitigate the combinatorial problem in SUSY-like events with two invisible particles at the LHC. We show that in comparison to other approaches in the literature, the constrained M2M_2 variables provide superior ansatze for the unmeasured invisible momenta and therefore can be usefully applied to discriminate combinatorial ambiguities. We illustrate our procedure with the example of dilepton ttˉt\bar{t} events. We critically review the existing methods based on the Cambridge MT2M_{T2} variable and MAOS-reconstruction of invisible momenta, and show that their algorithm can be simplified without loss of sensitivity, due to a perfect correlation between events with complex solutions for the invisible momenta and events exhibiting a kinematic endpoint violation. Then we demonstrate that the efficiency for selecting the correct partition is further improved by utilizing the M2M_2 variables instead. Finally, we also consider the general case when the underlying mass spectrum is unknown, and no kinematic endpoint information is available.

Keywords

Cite

@article{arxiv.1706.04995,
  title  = {Resolving Combinatorial Ambiguities in Dilepton $t\bar t$ Event Topologies with Constrained $M_2$ Variables},
  author = {Dipsikha Debnath and Doojin Kim and Jeong Han Kim and Kyoungchul Kong and Konstantin T. Matchev},
  journal= {arXiv preprint arXiv:1706.04995},
  year   = {2017}
}