A Search for the Single Production of Vector-like Quarks Decaying to a W-boson and a B-quark in the Leptonic Final State with the ATLAS Detector

A Search for the Single Production of Vector-like Quarks Decaying to a W-boson and a B-quark in the Leptonic Final State with the ATLAS Detector PDF Author: Ferdinand Schenck
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Languages : en
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Search for Single Production of Vector-like Quarks Decaying Into a B Quark and a W Boson in Proton-proton Collisions at $\sqrt{s}

Search for Single Production of Vector-like Quarks Decaying Into a B Quark and a W Boson in Proton-proton Collisions at $\sqrt{s} PDF Author:
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Languages : en
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A search is presented for a heavy vector-like quark, decaying into a b quark and a W boson, which is produced singly in association with a light flavor quark and a b quark. The analysis is performed using a data sample of proton-proton collisions at a center-of-mass energy of $\sqrt{s} = $ 13 TeV collected at the LHC in 2015. The data set used in the analysis corresponds to an integrated luminosity of 2.3 inverse-femtobarns. The search is carried out using events containing one electron or muon, at least one b-tagged jet with large transverse momentum, at least one jet in the forward region of the detector, and missing transverse momentum. No excess over the standard model prediction is observed. Upper limits are placed on the production cross section of heavy exotic quarks: a T quark with a charge of 2/3, and a Y quark with a charge of -4/3. For Y quarks with coupling of 0.5 and B(Y to bW) = 100%, the observed (expected) lower mass limits are 1.40 (1.0) TeV. This is the most stringent limit to date on the single production of the Y vector-like quark.

Search for a Vector-like Quark T' Decaying Into Top+Higgs in Single Production Mode in Full Hadronic Final State Using CMS Data Collected at 8 TeV

Search for a Vector-like Quark T' Decaying Into Top+Higgs in Single Production Mode in Full Hadronic Final State Using CMS Data Collected at 8 TeV PDF Author: José David Ruiz Alvarez
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Languages : en
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During 2012, the Large Hadron Collider (LHC) has delivered proton-proton collisions at 8 TeV center of mass energy to the ATLAS and CMS experiments. These two experiments have been designed to discover the Higgs boson and to search for new particles predicted by several theoretical models, as supersymmetry. The Higgs boson has been discovered by ATLAS and CMS experiments on July, 4th of 2012, starting a new era of discoveries in particle physics domain. With the confirmation of the existence of the Higgs boson, searches for new physics involving this boson are of major interest. In particular, data can be used to look for new massive particles that decay into the Higgs boson accompanied with other particles of the standard model. One expected signature is a Higgs boson produced with a top quark, the two heaviest particles in the standard model. The standard model predicts a cross section of top-Higgs production, then any enhancement of their associated production will be a clear signature of physics beyond the standard model. In addition, the existence of physics beyond the standard model can also be reflected by resonances that decay into a top-quark and a Higgs boson. In the first part of my work I describe the theoretical and experimental foundations of the standard model, as well as the experimental device. In the same theoretical chapter, I also discuss the formulation of an extension of the standard model. In addition, I describe a feasibility study of a search of one of the particles predicted by such model. The second part contains the realization of the search for a top partner, T_, within the CMS experiment. This top partner is a new particle very similar to the standard model top quark, but much heavier, that can decay into a top quark and a Higgs boson. The analysis looks for this particle in the full hadronic final state, where the Higgs boson decays into two b-quarks and the top quark decays into three standard model quarks, a b and two light quarks. In this channel, I reconstruct its mass from the identification of all its decay products. As a result of the analysis, I show the limits on the T_ production cross section from the number of observed events in the specific signature.

Search for Single Production of a Heavy Vector-like T Quark Decaying to a Higgs Boson and a Top Quark with a Lepton and Jets in the Final State

Search for Single Production of a Heavy Vector-like T Quark Decaying to a Higgs Boson and a Top Quark with a Lepton and Jets in the Final State PDF Author:
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Languages : en
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A search for single production of vector-like top quark partners (T) decaying into a Higgs boson and a top quark is performed using data from pp collisions at a centre-of-mass energy of 13 TeV collected by the CMS experiment at the CERN LHC, corresponding to an integrated luminosity of 2.3 inverse femtobarns. The top quark decay includes an electron or a muon while the Higgs boson decays into a pair of b quarks. No significant excess over standard model backgrounds is observed. Exclusion limits on the product of the production cross section and the branching fraction are derived in the T quark mass range 700 to 1800 GeV. For a mass of 1000 GeV, values of the product of the production cross section and the branching fraction greater than 0.8 and 0.7 pb are excluded at 95% confidence level, assuming left- and right-handed coupling of the T quark to standard model particles, respectively. This is the first analysis setting exclusion limits on the cross section of singly produced vector-like T quarks at a centre-of-mass energy of 13 TeV.

Search for Single Production of a Vectorlike T Quark Decaying Into a Higgs Boson and Top Quark with Fully Hadronic Final States Using the ATLAS Detector

Search for Single Production of a Vectorlike T Quark Decaying Into a Higgs Boson and Top Quark with Fully Hadronic Final States Using the ATLAS Detector PDF Author: [Study Group] ATLAS Collaboration CERN
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Languages : en
Pages : 0

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Search for Vector-like Quarks with the ATLAS Experiment at the Large Hadron Collider

Search for Vector-like Quarks with the ATLAS Experiment at the Large Hadron Collider PDF Author: Mesut Ünal
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Languages : en
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This thesis describes a search for new, heavy fermions using LHC data collected in 2015-2018 with the ATLAS detector. A search for single production of a vector-like top quark (VLT) decaying to a Z boson and a top quark in the dilepton final state is presented. This high statistics decay channel has high discovery potential thanks to the possibility of VLT mass reconstruction using the Z boson and top quark masses. The top quark decaying from a VLT is typically found in highly boosted, large-radius hadronic jets, which makes the identification challenging. To overcome this, novel top quark candidate identification techniques have been developed using the substructure information of variable-radius re-clustered jets. Variable-radius re-clustering uses large jets within a cone of momentum-dependent radius. The substructure information most sensitive to the top quark identification includes the mass, transverse momentum, and number of jet constituents. In this thesis, a detailed statistical analysis of the results of the search for VLT is presented. No deviation from the Standard Model is observed. The strongest to date observed and expected limits on the vector-like top mass as a function of coupling constant are set. In the case of VLT singlets with a coupling of kappa = 0.5, masses below 1810 GeV are excluded at the 95% confidence level

Search for Pair Production of a New B' Quark that Decays Into a Z Boson and a Bottom Quark with the ATLAS Detector at the LHC

Search for Pair Production of a New B' Quark that Decays Into a Z Boson and a Bottom Quark with the ATLAS Detector at the LHC PDF Author: Andre Milton Bach
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Languages : en
Pages : 260

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A search with the ATLAS detector for the pair production of a new b' quark in the Z boson plus b quark decay channel is reported. The pp collision data comprise 4.7 fb-1 of integrated luminosity at sqrt(s) = 7 TeV collected at the CERN Large Hadron Collider in 2011. This search complements recent searches for a b' decaying to a W boson and a top quark, and it is particularly important for new physics models containing vector-like quarks. From events containing both a Z boson reconstructed from electrons and a b tagged jet, any potential signal is enriched by selecting a subsample with large b' candidate pT. No evidence for a b' signal is found in this subsample; the invariant mass spectrum of the b' candidate agrees well with the Standard Model prediction. For the case of a b' that decays only to Z + b, masses mb'

Search for Single Production of Vector-like Quarks Decaying to a Top Quark and a W Boson in Proton-proton Collisions at √s

Search for Single Production of Vector-like Quarks Decaying to a Top Quark and a W Boson in Proton-proton Collisions at √s PDF Author: Albert M. Sirunyan
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Languages : en
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Search for Single Production of a Heavy Vector-like T Quark Decaying to a Higgs Boson and a Top Quark with a Lepton and Jets in the Final State

Search for Single Production of a Heavy Vector-like T Quark Decaying to a Higgs Boson and a Top Quark with a Lepton and Jets in the Final State PDF Author:
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Languages : en
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Search for Single Production of a Vector-like Quark Via a Heavy Gluon in the 4b Final State with the ATLAS Detector in Pp Collisions at [mml

Search for Single Production of a Vector-like Quark Via a Heavy Gluon in the 4b Final State with the ATLAS Detector in Pp Collisions at [mml PDF Author:
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Languages : en
Pages : 20

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In this study, a search is performed for the process pp → G* → BH$\bar{b}$/$\bar{B}$Hb → H$b\bar{b}$→ $b\bar{b}b\bar{b}$, predicted in composite Higgs scenarios, where G* is a heavy colour octet vector resonance and BHBH a vector-like quark of charge -1/3. The data were obtained from pp collisions at a centre-of-mass energy of 8 TeV corresponding to an integrated luminosity of 19.5 fb-1, recorded by the ATLAS detector at the LHC. The largest background, multijet production, is estimated using a data-driven method. No significant excess of events with respect to Standard Model predictions is observed, and upper limits on the production cross section times branching ratio are set. Comparisons to the predictions from a specific benchmark model are made, resulting in lower mass limits in the two-dimensional mass plane of mG* vs. mBH.