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Precision Matters: Measurement of the W Boson Mass and Width with the ATLAS Detector at a Centre-of-mass Energy of 7 TeV and the Activity of the Underlying Event in Z Boson Events at a Centre-of-mass Energy of 13 TeV

Precision Matters: Measurement of the W Boson Mass and Width with the ATLAS Detector at a Centre-of-mass Energy of 7 TeV and the Activity of the Underlying Event in Z Boson Events at a Centre-of-mass Energy of 13 TeV
Author: Lennart Adam
Publisher:
Total Pages:
Release: 2021
Genre: Force and energy
ISBN:

Download Precision Matters: Measurement of the W Boson Mass and Width with the ATLAS Detector at a Centre-of-mass Energy of 7 TeV and the Activity of the Underlying Event in Z Boson Events at a Centre-of-mass Energy of 13 TeV Book in PDF, ePub and Kindle


Precision Matters: Measurement of the W Boson Mass and Width with the ATLAS Detector at a Centre-of-mass Energy of 7 TeV and the Activity of the Underlying Event in Z Boson Events at a Centre-of-mass Energy of 13 TeV

Precision Matters: Measurement of the W Boson Mass and Width with the ATLAS Detector at a Centre-of-mass Energy of 7 TeV and the Activity of the Underlying Event in Z Boson Events at a Centre-of-mass Energy of 13 TeV
Author: Lennart Adam
Publisher:
Total Pages: 0
Release: 2021
Genre:
ISBN:

Download Precision Matters: Measurement of the W Boson Mass and Width with the ATLAS Detector at a Centre-of-mass Energy of 7 TeV and the Activity of the Underlying Event in Z Boson Events at a Centre-of-mass Energy of 13 TeV Book in PDF, ePub and Kindle


A Precision Measurement of the W Boson Mass at

A Precision Measurement of the W Boson Mass at
Author:
Publisher:
Total Pages: 9
Release: 2009
Genre:
ISBN:

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I present the first measurement of the W boson mass in the electron decay channel using the Run II D0 detector at the Fermilab Tevatron Collider. The data used was collected from 2002 to 2006 and the integrated luminosity is 1 fb−1. The W boson mass was determined from the likelihood fit to the measured data distribution. The mass value is found to be 80.401 ± 0.023(stat) ± 0.037(syst) GeV = 80.401 ± 0.044 GeV using the transverse mass spectrum, which is the most precise measurement from one single experiment to date. This result puts tighter constraints on the mass of the standard model Higgs boson. I also present three other measurements that can help to reduce the theoretical uncertainties for the future W mass measurements.


Measurement of the W Boson Mass with the ATLAS Detector

Measurement of the W Boson Mass with the ATLAS Detector
Author: Oleh Kivernyk
Publisher:
Total Pages: 0
Release: 2016
Genre:
ISBN:

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This thesis describes a measurement of the W boson mass with the ATLAS detector based on the data-set recorded by ATLAS in 2011 at a centre-of-mass energy of 7 TeV, and corresponding to 4.6 inverse femtobarn of integrated luminosity. Measurements are performed through template fits to the transverse momentum distributions of charged leptons and to transverse mass distributions of the W boson, in electron and muon decay modes in various kinematic categories. The individual measurements are found to be consistent and their combination leads to a value of m_W = 80371.1 ± 18.6 MeV. The measured value of the W boson mass is compatible with the current world average of m_W = 80385 ± 15 MeV. The uncertainty is competitive with the current most precise measurements performed by the CDF and D0 collaborations.


Precision Measurement of the Mass and Width of the W Boson at CDF.

Precision Measurement of the Mass and Width of the W Boson at CDF.
Author: S. Malik
Publisher:
Total Pages:
Release: 2010
Genre:
ISBN:

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A precision measurement of the mass and width of the W boson is presented. The W bosons are produced in proton antiproton collisions occurring at a centre of mass energy of 1.96 TeV at the Tevatron accelerator. The data used for the analyses is collected by the Collider Detector at Fermilab (CDF) and corresponds to an average integrated luminosity of 350 pb-1 for the W width analysis for the electron and muon channels and an average integrated luminosity of 2350 pb-1 for the W mass analysis. The mass and width of the W boson is extracted by fitting to the transverse mass distribution, with the peak of the distribution being most sensitive to the mass and the tail of the distribution sensitive to the width. The W width measurement in the electron and muon channels is combined to give a final result of 2032 ± 73 MeV. The systematic uncertainty on the W mass from the recoil of the W boson against the initial state gluon radiation is discussed. A systematic study of the recoil in Z \rightarrow e+e- events where one electron is reconstructed in the central calorimeter and the other in the plug calorimeter and its effect on the W mass is presented for the first time in this thesis.


First Run II Measurement of the W Boson Mass

First Run II Measurement of the W Boson Mass
Author:
Publisher:
Total Pages:
Release: 2007
Genre:
ISBN:

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We describe a measurement of the W boson mass m{sub W} using 200 pb−1 of √s = 1.96 TeV p{bar p} collision data taken with the CDF II detector. With a sample of 63,964 W → e[nu] candidates and 51,128 W → [mu][nu] candidates, we measure m{sub W} = [80.413 ± 0.034(stat.) ± 0.034 (sys.) = 80.413 ± 0.048] GeV/c2. This is the single most precise m{sub W} measurement to date. When combined with other measured electroweak parameters, this result further constrains the properties of new unobserved particles coupling to W and Z bosons.


Precise Measurement of the $W$-boson Mass with the CDF II Detector

Precise Measurement of the $W$-boson Mass with the CDF II Detector
Author:
Publisher:
Total Pages: 4
Release: 2012
Genre:
ISBN:

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We have measured the W-boson mass M{sub W} using data corresponding to 2.2 fb−1 of integrated luminosity collected in p{bar p} collisions at √s = 1.96 TeV with the CDF II detector at the Fermilab Tevatron collider. Samples consisting of 470 126 W → e? candidates and 624 708 W →?? candidates yield the measurement M{sub W} = 80 387 ± 12{sub stat} ± 15{sub syst} = 80 387 ± 19 MeV/c2. This is the most precise measurement of the W-boson mass to date and significantly exceeds the precision of all previous measurements combined.


A Precision Measurement of the W Boson Mass with 1 Inverse Femtobarn of DZero Run IIa Data

A Precision Measurement of the W Boson Mass with 1 Inverse Femtobarn of DZero Run IIa Data
Author:
Publisher:
Total Pages: 398
Release: 2009
Genre:
ISBN:

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This thesis is a detailed presentation of a precision measurement of the mass of the W boson. It has been obtained by analyzing W → e[nu] decays. The data used for this analysis was collected from 2002 to 2006 with the D0 detector, during Run IIa of the Fermilab Tevatron collider. It corresponds to a total integrated luminosity of 1 fb−1. With a sample of 499,830 W → e[nu] candidate events, we obtain a mass measurement of M{sub W} = 80.401 ± 0.043 GeV. This is the most precise measurement from a single experiment to date.