WZ plus missing-E_T signal from gaugino pair production at LHC7
Howard Baer, Vernon Barger, Sabine Kraml, Andre Lessa, Warintorn, Sreethawong, Xerxes Tata

TL;DR
This paper explores the potential of the LHC7 to detect supersymmetric gaugino pair production via WZ + missing energy signals, especially in models with heavy scalars and non-universal gaugino masses, expanding search strategies beyond traditional MET + jets channels.
Contribution
It analyzes the LHC7 reach in the WZ + MET channel for models with heavy scalars and non-universal gaugino masses, providing new insights into detection prospects in these scenarios.
Findings
LHC7 can reach up to m_{\tw_1} \sim 200-250 GeV in simplified models.
WZ + MET channel is competitive with MET + jets for heavy squark models at 30 fb^-1.
Detection prospects improve with increased integrated luminosity.
Abstract
LHC searches for supersymmetry currently focus on strongly produced sparticles, which are copiously produced if gluinos and squarks have masses of a few hundred GeV. However, in supersymmetric models with heavy scalars, as favored by the decoupling solution to the SUSY flavor and CP problems, and m_{\tg}> 500 GeV as indicated by recent LHC results, chargino--neutralino (\tw_1^\pm\tz_2) production is the dominant cross section for m_{\tw_1} \sim m_{\tz_2} < m_{\tg}/3 at LHC with \sqrt{s}=7 TeV (LHC7). Furthermore, if m_{\tz_1}+m_Z \lesssim m_{\tz_2}\lesssim m_{\tz_1}+m_h, then \tz_2 dominantly decays via \tz_2\to\tz_1 Z, while \tw_1 decays via \tw_1\to \tz_1 W. We investigate the LHC7 reach in the WZ + MET channel (for both leptonic and hadronic decays of the W boson) in models with and without the assumption of gaugino mass universality. In the case of the mSUGRA/CMSSM model with heavy…
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