Fr. 134.00

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

English · Hardback

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Description

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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.

List of contents

Introduction.- Theory.- Status of Higgs Boson Search and Discovery.- The Experiment.- Analysis and Trigger Strategy.- Final Analysis Strategy.- Systematic Uncertainties.- Results and Discussion.

About the author

Research performed at the University of Victoria, Canada.
Current affiliation:
Department of Physics
University of New Brunswick
Fredericton, NB
Canada

Summary

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.

Product details

Authors Eric Ouellette
Publisher Springer, Berlin
 
Languages English
Product format Hardback
Released 01.01.2015
 
EAN 9783319135984
ISBN 978-3-31-913598-4
No. of pages 106
Dimensions 165 mm x 243 mm x 11 mm
Weight 309 g
Illustrations XXI, 106 p. 58 illus., 43 illus. in color.
Series Springer Theses
Springer Theses
Subject Natural sciences, medicine, IT, technology > Physics, astronomy > Atomic physics, nuclear physics

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