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Sekulla, Marco: Anomalous couplings, resonances and unitarity in vector boson scatteringAnomale Kopplungen, Resonanzen und Unitarität in Vektorboson-Streuung. 2015
Inhalt
Abstract
Contents
1. Introduction
2. Representations of the Standard Model
2.1. Basic Definitions
2.2. Nonlinear Realization of Electroweak Symmetry Breaking
2.3 The Linear Matrix Representation
3. Effective Quantum Field Theories
3.1 Example: Fermi Theory
3.2 Effective Field Theory Operator Bases
Minimizing the Operator Set
3.3 Dimension Six Operators
3.4 Dimension Eight Operator set
3.5 Vector Boson Scattering at the LHC
3.6. The Goldstone Boson Scattering Amplitude
4. Unitarity
4.1. Crossing symmetry
4.2 Optical Theorem
4.3 Isospin Eigenamplitude
4.4. Unitarity Bound for Effective Operators
4.5 Unitarization
4.6 Physical Process
5. Resonances
5.1 Quantum Numbers
5.2 Isoscalar-Scalar Resonances
5.3. Isoscalar-Tensor Resonances
5.4 Isotensor-Scalar Resonances
5.5 Isotensor-Tensor Resonances
5.6 Physical Processes
Conclusions
Chapter A Mathematical Definitions
A.1. SU(2) Algebra
A.2. Legendre Polynomials
A.3. Isospin Basis
A.4. Details on T-Matrix Unitarization
A.5. Dimension eight Operators in Eboli-Basis
Chapter B Feynman-Rules
B.1. Lagrangian
B.2. Unitary Gauge
B.3. Gaugeless Limit
B.4. Conversion
Chapter C WHIZARD Implementation
C.1. Models
C.2. The Standard Model in WHIZARD/O’MEGA
C.3. Resonance Model Implementation
C.4. Unitarization
Bibliography