Publication

Search for new physics with the M$_{T2}$ variable in all-jets final states produced in pp collisions at $ \sqrt{s}=13 $ TeV

Résumé

A search for new physics is performed using events that contain one or more jets, no isolated leptons, and a large transverse momentum imbalance, as measured through the MT2_{T2} variable, which is an extension of the transverse mass in events with two invisible particles. The results are based on a sample of proton-proton collisions collected at a center-of-mass energy of 13 TeV with the CMS detector at the LHC, and that corresponds to an integrated luminosity of 2.3 fb1^{−1}. The observed event yields in the data are consistent with predictions for the standard model backgrounds. The results are interpreted using simplified models of supersymmetry and are expressed in terms of limits on the masses of potential new colored particles. Assuming that the lightest neutralino is stable and has a mass less than about 500 GeV, gluino masses up to 1550-1750 GeV are excluded at 95% confidence level, depending on the gluino decay mechanism. For the scenario of direct production of squark-antisquark pairs, top squarks with masses up to 800 GeV are excluded, assuming a 100% branching fraction for the decay to a top quark and neutralino. Similarly, bottom squark masses are excluded up to 880 GeV, and masses of light-flavor squarks are excluded up to 600-1260 GeV, depending on the degree of degeneracy of the squark masses.

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Concepts associés (34)
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The Minimal Supersymmetric Standard Model (MSSM) is an extension to the Standard Model that realizes supersymmetry. MSSM is the minimal supersymmetrical model as it considers only "the [minimum] number of new particle states and new interactions consistent with "Reality". Supersymmetry pairs bosons with fermions, so every Standard Model particle has a superpartner yet undiscovered. If discovered, such superparticles could be candidates for dark matter, and could provide evidence for grand unification or the viability of string theory.
Stop squark
In particle physics, a stop squark, symbol _top squark, is the superpartner of the top quark as predicted by supersymmetry (SUSY). It is a sfermion, which means it is a spin-0 boson (scalar boson). While the top quark is the heaviest known quark, the stop squark is actually often the lightest squark in many supersymmetry models. The stop squark is a key ingredient of a wide range of SUSY models that address the hierarchy problem of the Standard Model (SM) in a natural way.
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En physique des particules, une particule élémentaire, ou particule fondamentale, est une particule dont on ne connaît pas la composition : on ne sait pas si elle est constituée d'autres particules plus petites. Les particules élémentaires incluent les fermions fondamentaux (quarks, leptons, et leurs antiparticules, les antiquarks et les antileptons) qui composent la matière et l'antimatière, ainsi que des bosons (bosons de jauge et boson de Higgs) qui sont des vecteurs de forces et jouent un rôle de médiateur dans les interactions élémentaires entre les fermions.
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Search for top squark production in fully hadronic final states in proton-proton collisions at root s=13 TeV

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