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Preface to Volume II
15. Non-Abelian gauge theories;
15.1 Gauge Invariance
15.2 Gauge Theory Lagrangians and Simple Lie Groups
15.3 Field Equations and Conservation Laws
15.4 Quantization
15.5 The De Witt-Faddeev-Popov Method
15.6 Ghosts
15.7 BRST Symmetry
15.8 Generalizations of BRST Symmetry*
16. External field methods;
16.1 The Quantum Effective Action
16.2 Calculation of the Effective Potential
16.3 Energy Interpretion
16.4 Symmetries of the Effective Action
17. Renormalization of gauge theories;
17.1 The Zinn-Justin Equation
17.2 Renormalization: Direct Analysis
17.3 Renormalization: General Gauge Theories*
17.4 Background Field Gauge
17.5 A One-Loop Calculation in Background Field Gauge
18. Renormalization group methods;
18.1 Where do the Large Logarithms Come From?
18.2 The Sliding Scale
18.3 Varieties of Asymptotic Behavior
18.4 Multiple Couplings and Mass Effects
18.5 Critical Phenomena*
18.6 Minimal Subtraction
18.7 Quantum Chromodyanmics
18.8 Improved Perturbation Theory*
19. Spontaneously broken global symmetries;
19.1 Degenerate Vacua
19.2 Goldstone Bosons
19.3 Spontaneously Broken Approximate Symmetries
19.4 Pions as Goldstone Bosons
19.5 Effective Field Theories: Pions and Nucleons
19.6 Effective Field Theories: General Broken Symmetries
19.7 Effective Field Theories: SU
19.8 Anomalous Terms in Effective Field Theories*
19.9 Unbroken Symmetries
19.10 The U(1) Problem
20 OPERATOR PRODUCT EXPANSIONS
20.1 The Expansion: Description and Derivation
20.2 Momentum Flow*
20.3 Renormalization Group Equations Coeffcient Functions
20.4 Symmetry Properties of Coeffcient Functions
20.5 Spectral Function Sum Rules
20.6 Deep Inelastic Scattering
20.7 Renormalons*
21 SPONTANEOUSLY BROKEN GAUGE SYMMETRIES
21.1 Unitarity Gauge
21.2 Renormalizable c-Gauges
21.3 The Elecroweak Theory
21.4 Dynamically Broken Local Symmetries*
21.5 Electroweak-Strong Unification
21.6 Superconductivity*
22 ANOMALIES
22.1 The ?0 Decay Problem
22.2 Transformation of the Measute: The Abelian Anomaly
22.3 Direct Calculation of Anomalies: The General Case
22.4 Anomaly-Free Gauge Theories
22.5 Massless Bound States*
22.6 Consistency Conditions
22.7 Anmalies and Goldstone Bosons
23 EXTENDED FIELD CONFIGURATUONS
23,1 The Use of Topology
23.2 Homotopy Groups
23.3 Monopoles
23.4 The Cartan-Maurer Integral Invariant
23.5 Instantons
23.6 The Theta Angle
23.7 Quantum Fluctuations around Extended Field Congigurations
23.8 Vacuum Decay
AUTHOR INDEX
SUBJECT INDEX
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