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A Search for the Higgs Boson in Its Associated Production with a W Vector Boson in Pp Collisions at S

A Search for the Higgs Boson in Its Associated Production with a W Vector Boson in Pp Collisions at S
Author: Venkatesh S. Kaushik
Publisher: ProQuest
Total Pages:
Release: 2007
Genre: Higgs bosons
ISBN: 9780549388357

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We present the results of a search for the Standard Model Higgs boson in its associated production with a W vector boson in pp collisions at s = 1.96 TeV using the complete Run IIA dataset with an integrated luminosity of 1.04 fb-1 collected by the DO experiment. The salient features of this analysis are the extended geometric acceptance by including the pseudorapidity covered by the end cap calorimeter, optimization in b-tagging and event selection criteria. We observe very good agreement in the data compared to the expectation form the modeling of Standard Model background for the WH signal. No excess events in data are observed over the predicted background. We establish that the evidence for observing the Higgs boson in this channel is inconclusive and proceed to set upper cross section limits on the associated WH production at 95% confidence level. We derive the cross section upper limits for the Higgs mass (mH) ranging from 105 GeV/c2 to 145 GeV/c2. For m H = 115 GeV/c2, the observed (expected) upper limit is 0.8 (0.9) pb compared to the Standard Model expectation of 0.13 pb.


Search for the Standard Model Higgs Boson in Its Associated Production with a W Vector Boson in Pp Collisions at {u221A}s

Search for the Standard Model Higgs Boson in Its Associated Production with a W Vector Boson in Pp Collisions at {u221A}s
Author:
Publisher:
Total Pages: 275
Release: 2013
Genre:
ISBN:

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In this dissertation, results from a search for the Standard Model (SM) Higgs boson is shown. The SM is the theoretical framework which describes particles of matter and force carrier gauge bosons. To solve the mass problem in the SM, the Higgs mechanism was introduced in 1963. The Higgs mechanism causes an electroweak symmetry breaking and a new massive scalar boson was postulated. This particle is the Higgs boson. A search for the Higgs boson has been ongoing at the Tevatron where protons and antiprotons were allowed to collide at a center-of-mass energy of 1.96 TeV. For a low mass Higgs, that is a Higgs with a mass lower than 135 GeV, the dominant decay mode is Higgs to a pair of b-quarks (H →b $ar{b}$ ). This work concentrated on a Higgs whose mass is in the range of 100 150 GeV, with a W vector boson produced with the Higgs boson. The final state chosen is the one which contains a lepton a neutrino and a pair of b-quarks. This study used data provided by the DZERO experiment. Results presented here are the outcome of analyzing 5.3 fb-1 of data from RunII period. The analysis used different techniques to increase the sensitivity of the study. Data were subdivided based on lepton flavor, number of jets in sample, jets identified as b-jets and dates of collected data. A multivariate analysis technique based on boosted decision trees were used to separate signal from background processes, physical and instrumental. A good agreement between data and simulated events was observed.


A Search for the Higgs Boson in Its Associated Production with a W Vector Boson in P Anti-p Collisions at {u221A}s

A Search for the Higgs Boson in Its Associated Production with a W Vector Boson in P Anti-p Collisions at {u221A}s
Author:
Publisher:
Total Pages: 236
Release: 2007
Genre:
ISBN:

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We present the results of a search for the Standard Model Higgs boson in its associated production with a W vector boson in p$ar{p}$ collisions at √s = 1.96 TeV using the complete Run IIA dataset with an integrated luminosity of 1.04 fb-1 collected by the D0 experiment. The salient features of this analysis are the extended geometric acceptance by including the pseudorapidity covered by the end cap calorimeter, optimization in b-tagging and event selection criteria. We observe very good agreement in the data compared to the expectation form the modeling of Standard Model background for the WH signal. No excess events in data are observed over the predicted background. We establish that the evidence for observing the Higgs boson in this channel is inconclusive and proceed to set upper cross section limits on the associated WH production at 95% confidence level. We derive the cross section upper limits for the Higgs mass (mH) ranging from 105 GeV/c2 to 145 GeV/c2. For mH = 115 GeV/c2, the observed (expected) upper limit is 0.8 (0.9) pb compared to the Standard Model expectation of 0.13 pb.


A Search for the Higgs Boson in Its Associated Production with a W Vector Boson in P Anti-p Collisions at S**1/2

A Search for the Higgs Boson in Its Associated Production with a W Vector Boson in P Anti-p Collisions at S**1/2
Author:
Publisher:
Total Pages: 236
Release: 2007
Genre:
ISBN:

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We present the results of a search for the Standard Model Higgs boson in its associated production with a W vector boson in p{bar p} collisions at √s = 1.96 TeV using the complete Run IIA dataset with an integrated luminosity of 1.04 fb−1 collected by the D0 experiment. The salient features of this analysis are the extended geometric acceptance by including the pseudorapidity covered by the end cap calorimeter, optimization in b-tagging and event selection criteria. We observe very good agreement in the data compared to the expectation form the modeling of Standard Model background for the WH signal. No excess events in data are observed over the predicted background. We establish that the evidence for observing the Higgs boson in this channel is inconclusive and proceed to set upper cross section limits on the associated WH production at 95% confidence level. We derive the cross section upper limits for the Higgs mass (m{sub H}) ranging from 105 GeV/c2 to 145 GeV/c2. For m{sub H} = 115 GeV/c2, the observed (expected) upper limit is 0.8 (0.9) pb compared to the Standard Model expectation of 0.13 pb.


A Beauty-ful Boson

A Beauty-ful Boson
Author: Giulia Di Gregorio
Publisher: Springer Nature
Total Pages: 229
Release: 2023-01-01
Genre: Science
ISBN: 3031200136

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The analysis described in this thesis is the search for the Higgs boson, decaying into bb pair, in the associated production with a vector boson, in the extreme Higgs boson transverse momentum region where the Higgs boson is reconstructed using the large-R jet technique. The use of the large-R jets allows to add a part of the phase space unexplored so far, which is particularly sensitive to possible new physics. The analysed data have been collected at LHC by the ATLAS detector between 2015 and 2018 at a centre-of-mass energy of √s = 13 TeV. The same dataset has been used to perform the differential pp → ZH and pp → WH cross-section measurements used to extract the information on the Higgs couplings and to put limits on Beyond the Standard Model effects. Furthermore the analysis has been re-used to perform a cross-section measurement of the diboson ZZ and WZ processes because the diboson and the Higgs processes have a similar topology. For the first time the ZZ(bb) and WZ(bb) cross-sections are measured at √s = 13 TeV and the observed cross-section measurements are consistent with the Standard Model predictions.


Search for the Standard Model Higgs Boson in Its Associated Production with a W Vector Boson in P P-bar Collisions at Root S

Search for the Standard Model Higgs Boson in Its Associated Production with a W Vector Boson in P P-bar Collisions at Root S
Author: Hatim Hegab Ali Hegab
Publisher:
Total Pages: 241
Release: 2014
Genre:
ISBN:

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An observed (expected) upper limit of 4.5 (4.8) for a Higgs of mass 115 GeV was set on the ratio of the Higgs production to its decay branching ratio at the 95% confidence level.


Search for the Higgs Boson in the Vector Boson Fusion Channel at the ATLAS Detector

Search for the Higgs Boson in the Vector Boson Fusion Channel at the ATLAS Detector
Author: Eric Ouellette
Publisher: Springer
Total Pages: 114
Release: 2015-01-20
Genre: Science
ISBN: 3319135996

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This Thesis describes the first measurement of, and constraints on, Higgs boson production in the vector boson fusion mode, where the Higgs decays to b quarks (the most common decay channel), at the LHC. The vector boson fusion mode, in which the Higgs is produced simultaneously with a pair of quark jets, provides an unparalleled opportunity to study the detailed properties of the Higgs, including the possibility of parity and CP violation, as well as its couplings and mass. It thus opens up this new field of study for precision investigation as the LHC increases in energy and intensity, leading the way to this new and exciting arena of precision Higgs research.


Discovery and Measurement of the Higgs Boson in the WW Decay Channel

Discovery and Measurement of the Higgs Boson in the WW Decay Channel
Author: David Hall
Publisher: Springer
Total Pages: 175
Release: 2015-06-15
Genre: Science
ISBN: 3319199897

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This thesis describes the stand-alone discovery and measurement of the Higgs boson in its decays to two W bosons using the Run-I ATLAS dataset. This is the most precise measurement of gluon-fusion Higgs boson production and is among the most significant results attained at the LHC. The thesis provides an exceptionally clear exposition on a complicated analysis performed by a large team of researchers. Aspects of the analysis performed by the author are explained in detail; these include new methods for evaluating uncertainties on the jet binning used in the analysis and for estimating the background due to associated production of a W boson and an off-shell photon. The thesis also describes a measurement of the WW cross section, an essential background to Higgs boson production. The primary motivation of the LHC was to prove or disprove the existence of the Higgs boson. In 2012, CERN announced this discovery and the resultant ATLAS publication contained three decay channels: gg, ZZ, and WW.


Search for the Associated Production of a Higgs Boson with a Single Top Quark in Proton-proton Collisions at S

Search for the Associated Production of a Higgs Boson with a Single Top Quark in Proton-proton Collisions at S
Author:
Publisher:
Total Pages:
Release: 2016
Genre:
ISBN:

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A search is presented for the Higgs boson off-shell production in gluon fusion and vector boson fusion processes with the Higgs boson decaying into a WW pair and the W bosons decaying leptonically. The data observed in this analysis are used to constrain the Higgs boson total decay width. The analysis is based on the data collected by the CMS experiment at the LHC, corresponding to integrated luminosities of 4.9 inverse femtobarns at a centre-of-mass energy of 7 TeV and 19.4 inverse femtobarns at 8 TeV, respectively. An observed (expected) upper limit on the off-shell Higgs boson event yield normalised to the standard model prediction of 2.4 (6.2) is obtained at the 95% CL for the gluon fusion process and of 19.3 (34.4) for the vector boson fusion process. Observed and expected limits on the total width of 26 and 66 MeV are found, respectively, at the 95% confidence level (CL). These limits are combined with the previous result in the ZZ channel leading to observed and expected 95% CL upper limits on the width of 13 and 26 MeV, respectively.


Higgs Boson Decays into a Pair of Bottom Quarks

Higgs Boson Decays into a Pair of Bottom Quarks
Author: Cecilia Tosciri
Publisher: Springer Nature
Total Pages: 171
Release: 2021-10-22
Genre: Science
ISBN: 3030879380

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The discovery in 2012 of the Higgs boson at the Large Hadron Collider (LHC) represents a milestone for the Standard Model (SM) of particle physics. Most of the SM Higgs production and decay rates have been measured at the LHC with increased precision. However, despite its experimental success, the SM is known to be only an effective manifestation of a more fundamental description of nature. The scientific research at the LHC is strongly focused on extending the SM by searching, directly or indirectly, for indications of New Physics. The extensive physics program requires increasingly advanced computational and algorithmic techniques. In the last decades, Machine Learning (ML) methods have made a prominent appearance in the field of particle physics, and promise to address many challenges faced by the LHC. This thesis presents the analysis that led to the observation of the SM Higgs boson decay into pairs of bottom quarks. The analysis exploits the production of a Higgs boson associated with a vector boson whose signatures enable efficient triggering and powerful background reduction. The main strategy to maximise the signal sensitivity is based on a multivariate approach. The analysis is performed on a dataset corresponding to a luminosity of 79.8/fb collected by the ATLAS experiment during Run-2 at a centre-of-mass energy of 13 TeV. An excess of events over the expected background is found with an observed (expected) significance of 4.9 (4.3) standard deviation. A combination with results from other \Hbb searches provides an observed (expected) significance of 5.4 (5.5). The corresponding ratio between the signal yield and the SM expectation is 1.01 +- 0.12 (stat.)+ 0.16-0.15(syst.). The 'observation' analysis was further extended to provide a finer interpretation of the V H(H → bb) signal measurement. The cross sections for the VH production times the H → bb branching ratio have been measured in exclusive regions of phase space. These measurements are used to search for possible deviations from the SM with an effective field theory approach, based on anomalous couplings of the Higgs boson. The results of the cross-section measurements, as well as the constraining of the operators that affect the couplings of the Higgs boson to the vector boson and the bottom quarks, have been documented and discussed in this thesis. This thesis also describes a novel technique for the fast simulation of the forward calorimeter response, based on similarity search methods. Such techniques constitute a branch of ML and include clustering and indexing methods that enable quick and efficient searches for vectors similar to each other. The new simulation approach provides optimal results in terms of detector resolution response and reduces the computational requirements of a standard particles simulation.