Excitons and Cooper Pairs: Two Composite Bosons in Many-Body Physics: Oxford Graduate Texts
Autor Monique Combescot, Shiue-Yuan Shiauen Limba Engleză Hardback – 10 dec 2015
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Specificații
ISBN-13: 9780198753735
ISBN-10: 019875373X
Pagini: 560
Dimensiuni: 186 x 248 x 33 mm
Greutate: 1.26 kg
Editura: OUP OXFORD
Colecția OUP Oxford
Seria Oxford Graduate Texts
Locul publicării:Oxford, United Kingdom
ISBN-10: 019875373X
Pagini: 560
Dimensiuni: 186 x 248 x 33 mm
Greutate: 1.26 kg
Editura: OUP OXFORD
Colecția OUP Oxford
Seria Oxford Graduate Texts
Locul publicării:Oxford, United Kingdom
Notă biografică
M. Combescot is a former student of the Ecole Normale Superieure in Paris, France (Mathematics and Physics majors). In 1973, she obtained her Ph.D. in condensed matter many-body theory from the University of Paris, France (adviser Prof. Ph. Nozières). After two years of postdoc at Cornell University, USA, she returned as a research member at CNRS in Paris, permanently. Yet, she likes teaching very much --- she has been first at the "Aggregation de Physique", a competitive exam for high school teachers. For many years, she taught undergraduate courses at universities and engineering schools in Paris. Over the last two decades, she also gave various courses at the graduate level, in Paris and in many other places in the world. This book is based on one of these lectures.Dr. Shiue-Yuan Shiau obtained his B.S. in 1998 and M.S. in 2002 from National Taiwan University. In 2007, he received his Ph.D in condensed matter physics from the University of Wisconsin-Madison, USA. After postdocs in INAC/SPSM, CEA at Grenoble, France and in RCAS, Academia Sinica at Taipei, Taiwan, he is currently assistant research fellow at National Cheng Kung University, Taiwan.
Cuprins
- 1: Introduction
- Part I: Excitons
- 2: The Exciton Concept
- 3: Wannier Excitons
- 4: Frenkel Excitons
- 5: Elementary Bosons, Wannier and Frenkel Excitons, and Frenkel Excitons
- Part II: Cooper Pairs
- 6: The Cooper Pair Problem
- 7: The Bardeen-Cooper-Schrieffer Approach
- 8: The Bogoliubov Approach
- 9: The Gorkov Approach
- 10: Richardsib-Gaudin Exact Solution
- 11: Links Between Cooper Pairs and Excitons
- Part III: Particles Related to Excitons
- 12: Trions, Biexcitons and Polaritons
- 13: Trions
- 14: Biexcitons
- 15: Polaritons
- Part IV: Bosonic Condensation
- 16: From Elementary Composite Boson Condensates
- 17: Elementary Bosons
- 18: Composite Fermions
- 19: Composite Bosons
- Appendix A : Some Mathematical Results
- A.1: The Kronecker symbol and delta function
- A.2: Fourier transform and series expansion
- A.3: Coulomb scatterings
- Appendix B : The Second Quantization Formalism
- Appendix C : The Hamiltonian for Wannier Excitons
- C.1: The semiconductor Hamiltonian in first quantization
- C.2: Bloch states
- C.3: The semiconductor Hamiltonian on the Bloch basis
- Appendix D : The Valence Electron Operator Versus the Hole Operator
- D.1: Valence electron absence
- D.2: Spin 1/2
- D.3: l=1 orbital momentum
- Appendix E : "The Coboson Bible"
- Appendix F : Direct Coulomb Scattering for Wannier Excitons
- F.1: Creation potential
- F.2: Direct Coulomb scattering
- F.3: Symmetry properties
- Appendix G : Concerning N Ground-State Wannier Excitons
- G.1: Normalization factor
- G.2: Hamiltonian mean value
- Appendix H : Photon-Semiconductor Interaction
- H.1: Electromagnetic field in vacuum
- H.2: The electron Hamiltonian in a photon field
- H.3: Linear Coupling
- H.4: Quadratic coupling
- H.5: Complex polarization vectors
- Appendix I : Photon-Exciton Interaction
- I.1: Photon-exciton coupling
- I.2: The sum rule between photon-exciton couplings
- References
- Index