PAPER / ARXIV:2609.12914
Peter Athron , Csaba Balázs , Andy Buckley , Jon Butterworth , Christopher Chang , Andrew Fowlie , Tomás E. Gonzalo , Vinay Hegde , Ida-Marie Fauske Johansson , Adil Jueid , Tore Klungland , Anders Kvellestad , Farvah Mahmoudi , Gregory D. Martinez , Holly Pacey , Tomasz Procter , Are Raklev , Roberto Ruiz de Austri , Pat Scott , Martin White , Yang Zhang , Pengxuan Zhu
RESUMO
We perform global fits of the electroweak sector of the Minimal Supersymmetric Standard Model (MSSM) using a comprehensive set of LEP searches, 34 Run 2 LHC searches, and 63 Run 2 LHC measurements. Scanning the bino, wino and Higgsino mass parameters, and the ratio of the Higgs vacuum expectation values, we find that for a light, bino $\tilde{\chi}_{1}^0$, the mass of the next-to-lightest neutralino must be $m_{\tilde{\chi}_{2}^0} \gtrsim 760$ GeV. While MSSM electroweakinos can explain individual excesses observed by ATLAS and CMS in searches targeting compressed spectra, we find no scenarios that fit these excesses simultaneously. When we add a light gravitino, neutralinos are further excluded up to about 1 TeV, though this depends on their composition; Higgsino-dominated $\tilde{\chi}_{1}^0$ requires only $m_{\tilde{\chi}_{1}^0} \approx m_{\tilde{\chi}_{2}^0} \gtrsim 650$ GeV. Lastly, the newer LHC searches and measurements exclude a low-mass region that was preferred in a previous study. This is the most complete summary of collider constraints on the electroweakino sector of the MSSM performed to date.
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