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Low Mass Standard Model Higgs Limit at the Tevatron

Low Mass Standard Model Higgs Limit at the Tevatron
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Release: 2010
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The searches for the Standard Model (SM) Higgs Boson at the Fermilab Tevatron by the CDF and D0 experiments are presented. Their state of the art techniques, including maximizing Higgs signal acceptance, reducing background through b-jet ID, and with Multi-Variate discrimination between signal and background, are elucidated. The two experiments are able to achieve a sensitivity of three to five times SM cross section ([sigma]{sub SM}) at the benchmark mass point of m{sub H} = 115 GeV/c2 using the main search channels WH → lvbb, ZH → vvbb, and ZH → llbb, and on combining all the channels from CDF and D0, the observed (expected) limit is 1.56 (1.45) x [sigma]{sub SM}. The present expected limit is 1.8 x [sigma]{sub SM} or below for the entire low mass range, and sensitivity projections at present anticipate in Tevatron Run II a 3[sigma] sensitivity achievement for m{sub H} = 115 GeV/c2.


Search for the Higgs-Boson with the CDF Experiment at Tevatron

Search for the Higgs-Boson with the CDF Experiment at Tevatron
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Total Pages: 186
Release: 2005
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A search for a low-mass SM Higgs-Boson in the channel WH → lvb$\bar{b}$ has been performed using neural networks. The data were taken by the CDF experiment at the p-$\bar{p}$ collider Tevatron from 2000-2003, corresponding to in integrated luminosity of Lint = 162 pb-1 at a CMS-energy of √s = 1.96 TeV. 95% confidence level upper limits are set on [sigma] × BR, the product of the production cross section times the Branching ratio, as a function of the Higgs boson mass. Cross sections above 8 pb are excluded for six different Higgs masses between 110 GeV/c2 and 150 GeV/c2. The required integrated luminosities for a 95% C.L. exclusion, 3[sigma] evidence and 5[sigma] discovery are calculated.


Search for Low Mass Higgs at the Tevatron

Search for Low Mass Higgs at the Tevatron
Author: Benjamin Kilminster
Publisher:
Total Pages: 4
Release: 2006
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ISBN:

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We present CDF and D0 searches for a Standard Model Higgs boson produced associatively with a W or Z boson at {radical}s = 1.96 TeV using up to 1 fb{sup -1} of analyzed Tevatron data collected from February 2002 to February 2006. For Higgs masses less than 135 GeV/c{sup 2}, as is favored by experimental and theoretical constraints, W{sup {+-}} H {yields} {ell}{sup {+-}}{nu}b{bar b}, ZH {yields} {ell}{sup +}{ell}{sup -} b{bar b}, and ZH {yields} {nu}{bar {nu}}b{bar b} are the most sensitive decay channels to search for the Higgs boson. Both CDF and D0 have analyzed these three channels and found no evidence for Higgs production, and therefore set upper limits on the Higgs production cross-section. While the analyses are not yet sensitive to Standard Model Higgs production, improvements in analysis techniques are increasing sensitivity to the Higgs much faster than added luminosity alone.


Search for the Standard Model Higgs Boson in Final States with $b$ Quarks at the Tevatron

Search for the Standard Model Higgs Boson in Final States with $b$ Quarks at the Tevatron
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Release: 2011
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We present the result of searches for a low mass Standard Model Higgs boson produced in association with a W or a Z boson at a center-of-mass energy of √s = 1.96 TeV with the CDF and D0 detectors at the Fermilab Tevatron collider. The search is performed in events containing one or two b tagged jets in association with either two leptons, or one lepton and an imbalance in transverse energy, or simply a large imbalance in transverse energy. Datasets corresponding to up to 8.5 fb−1 of integrated luminosity are considered in the analyses. These are the most powerful channels in the search for a low mass Higgs boson at the Tevatron. Recent sensitivity improvements are discussed. For a Higgs mass of 115 GeV/c2, the expected sensitivity for the most sensitive individual analyses reaches 2.3 times the SM prediction at 95% confidence level (C.L.), with all limits below 5 times the SM. Additionally, a WZ/ZZ cross-section measurement is performed to validate the analysis techniques deployed for searching for the Higgs.


Search for the Standard Model Higgs Boson Associated with a W Boson Using Matrix Element Technique in the CDF Detector at the Tevatron

Search for the Standard Model Higgs Boson Associated with a W Boson Using Matrix Element Technique in the CDF Detector at the Tevatron
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Total Pages: 195
Release: 2010
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In this thesis a direct search for the Standard Model Higgs boson production in association with a W boson at the CDF detector in the Tevatron is presented. This search contributes predominantly in the region of low mass Higgs region, when the mass of Higgs boson is less than about 135 GeV. The search is performed in a final state where the Higgs boson decays into two b quarks, and the W boson decays leptonically, to a charged lepton (it can be an electron or a muon) and a neutrino. This work is organized as follows. Chapter 2 gives an overview of the Standard Model theory of particle physics and presents the SM Higgs boson search results at LEP, and the Tevatron colliders, as well as the prospects for the SM Higgs boson searches at the LHC. The dataset used in this analysis corresponds to 4.8 fb−1 of integrated luminosity of p{bar p} collisions at a center of mass energy of 1.96 TeV. That is the luminosity acquired between the beginning of the CDF Run II experiment, February 2002, and May 2009. The relevant aspects, for this analysis, of the Tevatron accelerator and the CDF detector are shown in Chapter 3. In Chapter 4 the particles and observables that make up the WH final state, electrons, muons, E{sub T}, and jets are presented. The CDF standard b-tagging algorithms to identify b jets, and the neural network flavor separator to distinguish them from other flavor jets are also described in Chapter 4. The main background contributions are those coming from heavy flavor production processes, such as those coming from Wbb, Wcc or Wc and tt. The signal and background signatures are discussed in Chapter 5 together with the Monte CArlo generators that have been used to simulate almost all the events used in this thesis. WH candidate events have a high-p{sub T} lepton (electron or muon), high missing transverse energy, and two or more than two jets in the final state. Chapter 6 describes the event selection applied in this analysis and the method used to estimate the background contribution. The Matrix Element method, that was successfully used in the single t0p discovery analysis and many other analyses within the CDF collaboration, is the multivariate technique used in this thesis to discriminate signal from background events. With this technique is possible to calculate a probability for an event to be classified as signal or background. These probabilities are then combined into a discriminant function called the Event Probability Discriminant, EPD, which increases the sensitivity of the WH process. This method is described in detail in Chapter 7. As no evidence for the signal has been found, the results obtained with this work are presented in Chapter 8 in terms of exclusion regions as a function of the mass of the Higgs boso, taking into account the full systematics. The conclusions of this work to obtain the PhD are presnted in Chapter 9.


The Large Hadron Collider

The Large Hadron Collider
Author: Thomas Schörner-Sadenius
Publisher: Springer
Total Pages: 554
Release: 2015-05-15
Genre: Science
ISBN: 3319150014

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This comprehensive volume summarizes and structures the multitude of results obtained at the LHC in its first running period and draws the grand picture of today’s physics at a hadron collider. Topics covered are Standard Model measurements, Higgs and top-quark physics, flavour physics, heavy-ion physics, and searches for supersymmetry and other extensions of the Standard Model. Emphasis is placed on overview and presentation of the lessons learned. Chapters on detectors and the LHC machine and a thorough outlook into the future complement the book. The individual chapters are written by teams of expert authors working at the forefront of LHC research.


The Standard Theory of Particle Physics

The Standard Theory of Particle Physics
Author: Luciano Maiani
Publisher: World Scientific Publishing Company
Total Pages: 483
Release: 2016-08-25
Genre: Science
ISBN: 9814733512

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The book gives a quite complete and up-to-date picture of the Standard Theory with an historical perspective, with a collection of articles written by some of the protagonists of present particle physics. The theoretical developments are described together with the most up-to-date experimental tests, including the discovery of the Higgs Boson and the measurement of its mass as well as the most precise measurements of the top mass, giving the reader a complete description of our present understanding of particle physics.


What is Known and Unexpected at LHC

What is Known and Unexpected at LHC
Author: Antonino Zichichi
Publisher: World Scientific
Total Pages: 344
Release: 2013
Genre: Science
ISBN: 9814522481

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Proceedings of the International School of Subnuclear Physics 2010