English

Determining the squark mass at the LHC

High Energy Physics - Phenomenology 2011-07-06 v2 High Energy Physics - Experiment

Abstract

We propose a new way to determine the squark mass based on the shape of di-jet invariant mass distribution of supersymmetry (SUSY) di-jet events at the Large Hadron Collider (LHC). Our algorithm, which is based on event kinematics, requires that the branching ratio B(q~qz~1)B(\tilde{q} \rightarrow q \tilde{z}_1) is substantial for at least some types of squarks, and that mz~12/mq~21m_{\tilde{z}_1}^2/m_{\tilde{q}}^2 \ll 1. We select di-jet events with no isolated leptons, and impose cuts on the total jet transverse energy, ETtot=ET(j1)+ET(j2)E_T^{tot}=E_T(j_1)+E_T(j_2), on α=ET(j2)/mjj\alpha = E_T(j_2)/m_{jj}, and on the azimuthal angle between the two jets to reduce SM backgrounds. The shape of the resulting di-jet mass distribution depends sensitively on the squark mass, especially if the integrated luminosity is sufficient to allow a hard enough cut on ETtotE_T^{tot} and yet leave a large enough signal to obtain the mjjm_{jj} distribution. We simulate the signal and Standard Model (SM) backgrounds for 100 fb1^{-1} integrated luminosity at 14 TeV requiring ETtot>700E_T^{tot}> 700 GeV. We show that it should be possible to extract mq~m_{\tilde{q}} to within about 3% at 95% CL --- similar to the precision obtained using mT2m_{T2} --- from the di-jet mass distribution if mq~650m_{\tilde{q}} \sim 650 GeV, or to within 5\sim 5% if mq~1m_{\tilde{q}}\sim 1 TeV.

Keywords

Cite

@article{arxiv.1103.0018,
  title  = {Determining the squark mass at the LHC},
  author = {Vernon Barger and Yu Gao and Andre Lessa and Xerxes Tata},
  journal= {arXiv preprint arXiv:1103.0018},
  year   = {2011}
}

Comments

20 pages, 9 figures. Footnote added, updated references

R2 v1 2026-06-21T17:33:11.527Z