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Chapter 5. Spontaneous Breaking of Global Symmetry
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Kapitel in diesem Buch
- Frontmatter i
- Contents v
- Preface ix
-
Part I
- Chapter 1. Gauge Principle In Electrodynamics 3
- Chapter 2. Scalar And Vector Fields 11
- Chapter 3. Elements of the Theory of Lie Groups and Algebras 33
- Chapter 4. Non-Abelian Gauge Fields 57
- Chapter 5. Spontaneous Breaking of Global Symmetry 85
- Chapter 6. Higgs Mechanism 105
- Supplementary Problems for Part I 127
-
Part II
- Chapter 7. The Simplest Topological Solitons 137
- Chapter 8. Elements of Homotopy Theory 173
- Chapter 9. Magnetic Monopoles 193
- Chapter 10. Non-Topological Solitons 215
- Chapter 11. Tunneling and Euclidean Classical Solutions in Quantum Mechanics 225
- Chapter 12. Decay of a False Vacuum in Scalar Field Theory 249
- Chapter 13. Instantons and Sphalerons in Gauge Theories 263
- Supplementary Problems for Part II 287
-
Part III
- Chapter 14. Fermions in Background Fields 295
- Chapter 15. Fermions and Topological External Fields in Two-dimensional Models 329
- Chapter 16. Fermions in Background Fields of Solitons and Strings in Four-Dimensional Space–Time 351
- Chapter 17. Non-Conservation of Fermion Quantum Numbers in Four-dimensional Non-Abelian Theories 373
- Supplementary Problems for Part III 397
- Appendix Classical Solutions and the Functional Integral 403
- Bibliography 429
- Index 441
Kapitel in diesem Buch
- Frontmatter i
- Contents v
- Preface ix
-
Part I
- Chapter 1. Gauge Principle In Electrodynamics 3
- Chapter 2. Scalar And Vector Fields 11
- Chapter 3. Elements of the Theory of Lie Groups and Algebras 33
- Chapter 4. Non-Abelian Gauge Fields 57
- Chapter 5. Spontaneous Breaking of Global Symmetry 85
- Chapter 6. Higgs Mechanism 105
- Supplementary Problems for Part I 127
-
Part II
- Chapter 7. The Simplest Topological Solitons 137
- Chapter 8. Elements of Homotopy Theory 173
- Chapter 9. Magnetic Monopoles 193
- Chapter 10. Non-Topological Solitons 215
- Chapter 11. Tunneling and Euclidean Classical Solutions in Quantum Mechanics 225
- Chapter 12. Decay of a False Vacuum in Scalar Field Theory 249
- Chapter 13. Instantons and Sphalerons in Gauge Theories 263
- Supplementary Problems for Part II 287
-
Part III
- Chapter 14. Fermions in Background Fields 295
- Chapter 15. Fermions and Topological External Fields in Two-dimensional Models 329
- Chapter 16. Fermions in Background Fields of Solitons and Strings in Four-Dimensional Space–Time 351
- Chapter 17. Non-Conservation of Fermion Quantum Numbers in Four-dimensional Non-Abelian Theories 373
- Supplementary Problems for Part III 397
- Appendix Classical Solutions and the Functional Integral 403
- Bibliography 429
- Index 441