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Published May 14, 2016 | Version v1

Search for gluino production in final states with an isolated lepton and b-tagged jets using 13TeV collisions at CMS

Authors/Creators

  • 1. DESY
  • 1. DESY
  • 2. Hamburg U

Description

A search for supersymmetric particles in proton-proton collisions at a centre-of-mass energy of 13 TeV is presented in this thesis. The data were recorded by the CMS experimentduring Run 2 of the LHC, corresponding to an integrated luminosity of 2.3 fb−1 . The signalsignature comprises pair produced gluon superpartners, gluinos, decaying each to a topantitop quark pair and a neutralino – the lightest supersymmetric particle. Since the probability, that only one W boson from the four initial top-quarks decays to a lepton-neutrinopair, is about 40%, events with a single isolated lepton, electron or muon, accompanied byseveral high-energy hadronic jets and at least one b-quark tagged jet are selected.Signal-enriched search regions are defined based on the azimuthal angle between thelepton and four-vector sum of the missing energy and lepton. The dominant StandardModel backgrounds tend towards lower angles, while the investigated signals are expectedto show little dependence on the angle. Further sensitivity to different signal mass scenarios is increased by considering events in categories with different jet and b-tag multiplicities, hadronic and leptonic scales, which are defined as the scalar sums of the jet transversemomenta, and the missing energy and lepton momentum, respectively.The background is estimated by a data-driven approach using background-enrichedcontrol regions. Low jet multiplicity data sidebands are used to obtain respective signal-tocontrol region transfer factors. Contributions from multijet events, which arise from misidentified leptons, are subtracted from these control regions using misidentification probabilities measured in data.No significant deviation from the predicted Standard Model background is observed.This result is interpreted in the framework of simplified models corresponding to the aforementioned signal signature, resulting in exclusion limits for particular gluino-neutralinomass scenarios. Gluinos below 1575 GeV are excluded for light neutralinos, while for scenarios with low neutralino-gluino mass splitting, neutralinos are excluded up to 850 GeV.This extends the limits obtained in Run 1 by about 200 and 250 GeV, respectively.In addition, the upgrade of the CMS outer hadron calorimeter readout system with silicon photomultipliers is presented, describing its motivation and the commissioning of thenew hardware. An initial energy calibration with cosmic muons is performed afterwards.

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Additional details

Identifiers

CDS
2226486
CDS Report Number
CMS-TS-2016-018
CDS Report Number
CERN-THESIS-2016-125

Related works

Is variant form of
Other: 1486830 (Inspire)

CERN

Department
PH - Physics Department
Programme
No program participation
Accelerator
CERN LHC
Experiment
CMS

Linked records