Measurement of the Top Quark Mass in the All Hadronic Final State at the DØ Experiment

Measurement of the Top Quark Mass in the All Hadronic Final State at the DØ Experiment PDF Author: Ayesh Jayasinghe
Publisher:
ISBN:
Category : Hadron colliders
Languages : en
Pages : 248

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Measurement of the Top Quark Mass in the All Hadronic Final State at the DØ Experiment

Measurement of the Top Quark Mass in the All Hadronic Final State at the DØ Experiment PDF Author: Ayesh Jayasinghe
Publisher:
ISBN:
Category : Hadron colliders
Languages : en
Pages : 248

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Measurement of the Top Quark Mass in the All Hadronic Final State at the D0 Experiment

Measurement of the Top Quark Mass in the All Hadronic Final State at the D0 Experiment PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 142

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Book Description
The top quark is the heaviest fermion observed to date. A precise measurement of its mass and W boson mass is important to indirect measurements of Higgs boson mass. Furthermore, the top quark mass, W boson mass and Higgs boson mass may test the Standard Model using the correlations between them. Here in this thesis, we present a measurement of the top quark mass in the all hadronic final state using the template method. This final state has the advantage of being fully reconstructed in the detector and having the largest branching fraction. The measurement is performed on 4033 candidate events collected using the DØ detector. The data is collected from pp collisions generated at √s =1.96 GeV by the TEVATRON accelerator, Fermi National Accelerator Laboratory, Batavia IL. This is a two dimensional measurement formulated to extract the top quark mass as well as lower the systematic uncertainty due to the jet energy scale calibration. A kinematic fitter is employed to build the templates of signal and background for various input top quark mass points and jet energy scale variations. These templates are compared to data to obtain the fitted top quark mass, jet energy scale shift and their uncertainties.

Measurement of the Top Quark Mass in the Dilepton Final State Using the Matrix Element Method

Measurement of the Top Quark Mass in the Dilepton Final State Using the Matrix Element Method PDF Author: Alexander Grohsjean
Publisher: Springer Science & Business Media
ISBN: 364214070X
Category : Science
Languages : en
Pages : 155

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The main pacemakers of scienti?c research are curiosity, ingenuity, and a pinch of persistence. Equipped with these characteristics a young researcher will be s- cessful in pushing scienti?c discoveries. And there is still a lot to discover and to understand. In the course of understanding the origin and structure of matter it is now known that all matter is made up of six types of quarks. Each of these carry a different mass. But neither are the particular mass values understood nor is it known why elementary particles carry mass at all. One could perhaps accept some small generic mass value for every quark, but nature has decided differently. Two quarks are extremely light, three more have a somewhat typical mass value, but one quark is extremely massive. It is the top quark, the heaviest quark and even the heaviest elementary particle that we know, carrying a mass as large as the mass of three iron nuclei. Even though there exists no explanation of why different particle types carry certain masses, the internal consistency of the currently best theory—the standard model of particle physics—yields a relation between the masses of the top quark, the so-called W boson, and the yet unobserved Higgs particle. Therefore, when one assumes validity of the model, it is even possible to take precise measurements of the top quark mass to predict the mass of the Higgs (and potentially other yet unobserved) particles.

Measurement of the Top Quark Mass in the All Hadronic Channel at the Tevatron

Measurement of the Top Quark Mass in the All Hadronic Channel at the Tevatron PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
This study presents a measurement of the top quark mass in the all hadronic channel of the top quark pair production mechanism, using 1 fb-1 of pp collisions at s =1.96 TeV collected at the Collider Detector at Fermilab (CDF). Few novel techniques have been used in this measurement. A template technique was used to simultaneously determine the mass of the top quark and the energy scale of the jets. Two sets of distributions have been parameterized as a function of the top quark mass and jet energy scale. One set of distributions is built from the event-by-event reconstructed top masses, determined using the Standard Model matrix element for the tt all hadronic process. This set is sensitive to changes in the value of the top quark mass. The other set of distributions is sensitive to changes in the scale of jet energies and is built from the invariant mass of pairs of light flavor jets, providing an in situ calibration of the jet energy scale. The energy scale of the measured jets in the final state is expressed in units of its uncertainty, sigmac. The measured mass of the top quark is 171.1+/-3.7(stat.unc.)+/-2.1(syst.unc.) GeV/c 2 and to the date represents the most precise mass measurement in the all hadronic channel and third best overall.

Measurement of the Top Quark Mass in the All Hadronic Channel at the Tevatron

Measurement of the Top Quark Mass in the All Hadronic Channel at the Tevatron PDF Author: Gheorghe Lungu
Publisher:
ISBN:
Category :
Languages : en
Pages :

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ABSTRACT: This study presents a measurement of the top quark mass in the all hadronic channel of the top quark pair production mechanism, using 1 fb−1 of pp [line over 2nd p] collisions at the square root of s=1.96 TeV collected at the Collider Detector at Fermilab (CDF). Few novel techniques have been used in this measurement. A template technique was used to simultaneously determine the mass of the top quark and the energy scale of the jets. Two sets of distributions have been parameterized as a function of the top quark mass and jet energy scale. One set of distributions is built from the event-by-event reconstructed top masses, determined using the Standard Model matrix element for the tt [line over 2nd t] all hadronic process. This set is sensitive to changes in the value of the top quark mass. The other set of distributions is sensitive to changes in the scale of jet energies and is built from the invariant mass of pairs of light flavor jets, providing an in situ calibration of the jet energy scale. The energy scale of the measured jets in the final state is expressed in units of its uncertainty, [sigma] sub c. The measured mass of the top quark is 171.1"3.7(stat.unc.)"2.1(syst.unc.) GeV/c2 and to the date represents the most precise mass measurement in the all hadronic channel and third best overall.

Measurement of Top Quark Mass in the All Hadronic Channel in S**1/2

Measurement of Top Quark Mass in the All Hadronic Channel in S**1/2 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 277

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Book Description
A measurement of the top quark mass in proton-antiproton collisions at √s = 1.96 TeV using 1040fb−1 of data collected in D detector at Fermilab is presented. This analysis focuses on the all-hadronic decay mode of the top quark and therefore only events with six or more calorimeter jets in the final state are considered.

A Measurement of the Top Quark Mass in the Dilepton Decay Channel at CDF II.

A Measurement of the Top Quark Mass in the Dilepton Decay Channel at CDF II. PDF Author: Bodhitha Anjalike Jayatilaka
Publisher:
ISBN:
Category :
Languages : en
Pages : 272

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Measurement of Top Quark Mass in the All Hadronic Channel in {u221A}s

Measurement of Top Quark Mass in the All Hadronic Channel in {u221A}s PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 277

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Book Description
A measurement of the top quark mass in proton-antiproton collisions at √s = 1.96 TeV using 1040fb-1 of data collected in D detector at Fermilab is presented. This analysis focuses on the all-hadronic decay mode of the top quark and therefore only events with six or more calorimeter jets in the final state are considered.

Measurement of the Top Quark Mass in the All-Hadronic Top-Antitop Decay Channel Using Proton-Proton Collision Data from the ATLAS Experiment at a Centre-of-Mass Energy of 8 TeV.

Measurement of the Top Quark Mass in the All-Hadronic Top-Antitop Decay Channel Using Proton-Proton Collision Data from the ATLAS Experiment at a Centre-of-Mass Energy of 8 TeV. PDF Author: Thomas McCarthy
Publisher:
ISBN:
Category :
Languages : en
Pages :

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A Precision Measurement of the Top Quark Mass

A Precision Measurement of the Top Quark Mass PDF Author: Kevin Matthew Black
Publisher:
ISBN:
Category :
Languages : en
Pages : 226

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This dissertation describes the measurement of the top quark mass using events recorded during a {approx} 230 pb{sup -1} exposure of the D0 detector to proton-anti-proton (p{bar p}) collisions at a center of mass energy of 1.96 TeV. The Standard Model of particle physics predicts that the top quark will decay into a bottom quark and a W boson close to 100% of the time. The bottom quark will hadronize (bind with another quark) and produce a jet of hadronic particles. The W bosons can decay either into a charged lepton and a neutrino or a pair of quarks. this dissertation focuses on the top quark (t{bar t}) events in which one W decays hadronically and the other decays leptonically. Two methods of identifying t{bar t} events from the large number of events produced are used. The first is based on the unique topology of the final state particles of a heavy particle. By using the topological information of the event, the t{bar t} events can be efficiently extracted from the background. The second method relies on the identification of the remnants of the long lived bottom quarks that are expected to be produced in the decay of almost every top quark. Because the largest background processes do not contain bottom quarks, this is an extremely efficient way to select the events retaining about 60% of the t{bar t} events and removing almost 90% of the background. A kinematic fit to the top quark mass is performed on the t{bar t} candidate events using the final state particles that are seen in the detector. A likelihood technique is then used to extract the most likely value of the top quark mass, m{sub t}, and signal fraction. The result for the topological selection is m{sub t} = 169.9 {+-} 5.8(statistical){sub -7.8}{sup +8.0}(systematic) GeV while the results on the sample selected from identification of a b quark in the event is m{sub t} = 170.6 {+-} 4.2(statistical){sub -6.8}{sup +6.3}(systematic) GeV.