"Interactions in Modern Particle Theory: Weak Interactions" by Howard Georgi



2010 | ISBN: n/a | 188 pages | PDF | 1 MB


A high-level and technical treatment of modern particle physics. In addition to its value as a text for advanced undergraduate and graduate students of physics, it also serves as a reference for professionals

This book was written by a well-known professor at Harvard University

Contents
1 Classical Symmetries
1.1 Noether's Theorem Classical
1.2 Examples
1a Quantum Field Theory
1a.1 Local Quantum Field Theory
1a.2 Composite Operators
1b Gauge Symmetries
1b.1 Noether's Theorem Field Theory
1b.2 Gauge Theories
1b.3 Global Symmetries of Gauge Theories
2 Weinberg's Model of Leptons
2.1 The electron
2.2 SU(2)  U(1)
2.3 Renormalizability? An Interlude
2.4 Spontaneous Symmetry Breakdown
2.5 The Goldstone Theorem
2.6 The Model
2.7 The Higgs Mechanism
2.8 Neutral Currents
3 Quarks and QCD
3.1 Color SU(3)
3.2 A Toy Model
3.3 Quark Doublets
3.4 GIM and Charm
3.5 The Standard Six Quark Model
3.6 CP Violation
4 SU(3) and Light Hadron Semileptonic Decays
4.1 Weak Decays of Light Hadrons
4.2 Isospin and the Determination of Vud
4.3 f
4.4 Strangeness Changing Currents
4.5 PT Invariance
4.6 Second Class Currents
4.7 The Goldberger-Treiman Relation
4.8 SU(3) D and F
5 Chiral Lagrangians | Goldstone Bosons
5.1 SU(3)  SU(3) ! SU(3)
5.2 Effective Low Momentum Field Theories
5.3 Sources
5.4 Symmetry breaking and light quark masses
5.5 What Happened to the Axial U(1)?
5.6 Light Quark Mass Ratios
5.7 The Chiral Currents
5.8 Semileptonic K Decays
5.9 The Chiral Symmetry{Breaking Scale
5.10 Important Loop Effects
5.11 Nonleptonic K Decay
6 Chiral Lagrangians | Matter Fields
6.1 How Do the Baryons Transform?
6.2 A More Elegant Transformation Law
6.3 Nonlinear Chiral Quarks
6.4 Successes of the Nonrelativistic Quark Model
6.5 Hyperon Nonleptonic Decays
6a Anomalies
6a.1 Electromagnetic Interactions and 0 ! 2
6a.2 The Steinberger Calculation
6a.3 Spectators, gauge invariance and the anomaly
7 The Parton Model
7.1 Mode Counting
7.2 Heavy Quark Decay
7.3 Deep Inelastic Lepton-Hadron Scattering
7.4 Neutrino-Hadron Scattering
7.5 Neutral Currents
7.6 The SLAC Experiment
8 Standard Model Precision Tests
8.1 Choosing a Gauge
8.2 Effective Field Theories
8.3 The Symmetries of Strong and Electroweak Interactions
8.4 The  Parameter
8.5 MW and MZ
8.6 Neutrino-hadron scattering
8.7 Technicolor
9 Nonleptonic Weak Interactions
9.1 Why We Can't Calculate
9.2 The Renormalization Group
9.3 Charm Decays
9.4 Penguins and the I = 1
2 Rule
10 The Neutral K Mesons and CP Violation
10.1 K0 K
0 Mixing
10.2 The Box Diagram and the QCD Corrections
10.3 The Gilman-Wise S = 2 Hamiltonian
10.4 CP Violation and the Parameter 
10.5 KL  and the Parameter 0
A Review of Dimensional Regularization
A.1 n Dimensional Integration
A.2 Regularization
B Background Field Gauge
B.1 The function

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