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Higgs properties at the LHC : implications for the standard model and for cosmology

Author: Jason Tsz Shing Yue
Publisher: Cham, Switzerland : Springer, 2017.
Series: Springer theses.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
This thesis studies the properties of the Higgs particle, discovered at the Large Hadron Collider (LHC) in 2012, in order to elucidate its role in electroweak symmetry breaking and cosmological phase transition in the early universe. It shows that a generic spin-2 Higgs impostor is excluded by the precision measurements of electroweak observables and perturbative unitarity considerations. It obtains LHC constraints  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Printed edition:
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Jason Tsz Shing Yue
ISBN: 9783319634029 331963402X
OCLC Number: 1002418577
Notes: "Doctoral thesis accepted by the University of Sydney, NSW, Australia."
Description: 1 online resource.
Contents: Supervisor's Foreword; Abstract; Preface-The Higgs Discovery; References; Acknowledgements; Contents; 1 Introduction --
Realisation of the EW Symmetry in the SM; 1.1 Renormalisability, Unitarity, Gauge Invariances and all that; 1.1.1 Renormalisability; 1.1.2 Unitarity; 1.1.3 SM from Gauge Invariance; 1.2 Spontaneous Symmetry Breaking and the Higgs Mechanism; 1.2.1 Non-linear Realisation; 1.2.2 STU Precision Parameters; 1.2.3 Higgs as Singlet Addition from Unitarity Considerations; References; 2 Spin Determination of the LHC Higgs-Like Resonance; 2.1 Excluding J=1; 2.2 Massive Spin-2. 2.2.1 Couplings to Matter2.3 hZ rightarrowhZ; 2.4 STU Parameters; 2.5 Remarks; References; 3 Probing mathcalCP-violating Top-Yukawa Couplings at the LHC; 3.1 Non-linear Realisation in the Top-Higgs Sector; 3.1.1 Contribution to Loops; 3.2 Bounds on mathcalCP-violating Couplings; 3.2.1 Branching Ratios and Production Cross Sections; 3.2.2 EDM Constraints; 3.3 Polarisation Phenomenology; 3.3.1 Lepton Spin-Correlation; 3.3.2 Single Top Production; 3.4 Higgs Associated with Single Top Production at the LHC ; 3.4.1 Collider Physics at the LHC. 3.4.2 Observability and Lepton Forward-Backward Asymmetry3.5 Remarks; References; 4 Electroweak Phase Transition and Baryogenesis; 4.1 Problems with Electroweak Baryogenesis; 4.2 EW Phase Transition and Effective Potentials; 4.2.1 Tree Level Potential; 4.2.2 One Loop Quantum Corrections; 4.2.3 Finite Temperature Corrections; 4.2.4 Combining Thermal and Quantum Effects; 4.3 Bubble Dynamics; 4.4 B-violation with Sphalerons; 4.5 Charge Transport Scenario; 4.5.1 Source Terms; 4.5.2 Number Densities; 4.5.3 Interaction Rates; 4.5.4 Approximations to Solve the Transport Equations. 4.6 Conversion of nL into nB by Weak Sphalerons4.7 Remarks; References; 5 Conclusions; References; Appendix; A.1 Unitarity; A. 2 hZrightarrowhZ Scattering; A.2.1. s-channel; A.2.2 t-channel; A.3 Decay Form Factors; A.4 Spinor-Helicity Formalism; A.4.1 Massive Case; A.5 Higgs Production Associated with Single Top; A.6 Sphaleron Energy; A.7 mathcalCP-violating Source; A.8 Solving Diffusion Equations; References.
Series Title: Springer theses.
Responsibility: Jason Tsz Shing Yue.

Abstract:

This thesis studies the properties of the Higgs particle, discovered at the Large Hadron Collider (LHC) in 2012, in order to elucidate its role in electroweak symmetry breaking and cosmological phase  Read more...

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