Quantum Mechanics: An Experimentalist's Approach
Autor Eugene D. Comminsen Limba Engleză Hardback – 7 sep 2014
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Specificații
ISBN-13: 9781107063990
ISBN-10: 110706399X
Pagini: 720
Ilustrații: 181 b/w illus. 18 tables 294 exercises
Dimensiuni: 210 x 260 x 30 mm
Greutate: 1.79 kg
Ediția:New.
Editura: Cambridge University Press
Colecția Cambridge University Press
Locul publicării:New York, United States
ISBN-10: 110706399X
Pagini: 720
Ilustrații: 181 b/w illus. 18 tables 294 exercises
Dimensiuni: 210 x 260 x 30 mm
Greutate: 1.79 kg
Ediția:New.
Editura: Cambridge University Press
Colecția Cambridge University Press
Locul publicării:New York, United States
Cuprins
Preface; 1. Introduction; 2. Mathematical preliminaries; 3. The rules of quantum mechanics; 4. The connection between the fundamental rules and wave mechanics; 5. Further illustrations of the rules of quantum mechanics; 6. Further developments in one-dimensional wave mechanics; 7. The theory of angular momentum; 8. Wave mechanics in three dimensions: hydrogenic atoms; 9. Time-independent approximations for bound state problems; 10. Applications of static perturbation theory; 11. Identical particles; 12. Atomic structure; 13. Molecules; 14. The stability of matter; 15. Photons; 16. Interaction of non-relativistic charged particles and radiation; 17. Further topics in perturbation theory; 18. Scattering; 19. Special relativity and quantum mechanics: the Klein–Gordon equation; 20. The Dirac equation; 21. Interaction of a relativistic spin ½ particle with an external electromagnetic field; 22. The Dirac field; 23. Interaction between relativistic electrons, positrons, and photons; 24. The quantum mechanics of weak interactions; 25. The quantum measurement problem; Appendix A: useful inequalities for quantum mechanics; Appendix B: Bell's inequality; Appendix C: spin of the photon: vector spherical waves; Works cited; Bibliography; Index.
Notă biografică
Descriere
A self-contained introduction for advanced students in physics who want to acquire serious knowledge and understanding of quantum mechanics.