Difference: PhysicsResultsSUS12002 (17 vs. 18)

Revision 182012-07-12 - PascalNef

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META TOPICPARENT name="SUS12002"
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Search for supersymmetry in hadronic final states using MT2 in 7 TeV pp collisions at the LHC

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Search for supersymmetry in hadronic final states using MT2 in pp collisions at sqrt(s) = 7 TeV

 

Abstract

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A search for supersymmetry or similar new physics was carried out using a $\sqrt{s} = 7$ TeV $pp$ collisions data sample corresponding to $4.73\ \mathrm{fb}^{-1}$ of integrated luminosity collected by the CMS experiment at the LHC. Fully hadronic final states were selected based on the stransverse mass variable $M_{T2}$. Two complementary analyses were performed. The first targets the region of parameter space with medium to high squark and gluino masses, in which the signal can be separated from the Standard Model backgrounds by a strong cut on $M_{T2}$. A second analysis has been optimized to look for events with a light gluino but heavy squarks. In this case, the $M_{T2}$ cut was relaxed, but a higher jet multiplicity and at least one b-tagged jet were required. The dominant backgrounds in both analyses are different and they were estimated using data-driven methods. As no excess of events over the expected background was observed, exclusion limits were derived on the parameter space of the constrained minimal supersymmetric extension of the Standard Model (mSUGRA/CMSSM), as well as on a variety of Simplified Model Spectra.
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A search for supersymmetry or other new physics resulting in similar final states is presented using a data sample of 4.73 fb-1 of pp collisions collected at $\sqrt{s} $ = 7 TeV with the CMS detector at the LHC. Fully hadronic final states are selected based on the variable MT2, an extension of the transverse mass in events with two invisible particles. Two complementary studies are performed. The first targets the region of parameter space with medium to high squark and gluino masses, in which the signal can be separated from the standard model backgrounds by a tight requirement on MT2. The second is optimized to be sensitive to events with a light gluino and heavy squarks. In this case, the MT2 requirement is relaxed, but a higher jet multiplicity and at least one b-tagged jet are required. No significant excess of events over the standard model expectations is observed. Exclusion limits are derived for the parameter space of the constrained minimal supersymmetric extension of the standard model, as well as on a variety of simplified model spectra.

This analysis is documented in arXiv:1207.1798, submitted to JHEP.

Further documentation is given in CMS-PAS-SUS-12-002

 
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Link to approved PAS.

PAS-SUS-12-002
 

Approved Plots from SUS-12-002 ( click on plot to get .pdf )

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SMS_T1bbbb_MT2bAnalysis.png Limits in the T1bbbb model using the MT2b analysis.
SMS_T5zz_MT2Analysis.png Limits in the T5zzInc model using the MT2 analysis.
SMS_T5zz_MT2bAnalysis.png Limits in the T5zzInc model using the MT2b analysis.
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SMS_T1tttt_MT2Analysis.png Limits in the T1tttt model using the MT2b analysis.
 
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