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530.12 GRE
530 Physique
Ouvrages généraux, Théories (dont théorie des quanta)
530 (Physique Ouvrages généraux, Théories (dont théorie des quanta))
530 BEU
530 DEV
530 EYM
530 FIZ
530 HAK
530 LUM
530 RAD
530 WAL
530.01 FRO
530.01 HAK
530.01 LES
530.02 KAR
530.02 PHY
530.03
530.06 BOU
530.07 CHO
530.07 CLA
530.07 ENO
530.07 MES
530.07 PHY
530.07 THO
530.071 VIE
530.076 BAC
530.076 BER
530.076 BEU
530.076 ESC
530.076 PHY
530.076 SAL
530.076 SAN
530.076 THO
530.092 BAR
530.092 DIE
530.1 BLO
530.1 BOU
530.1 KAN
530.1 KLA
530.1 LAK
530.1 LAN
530.1 LIF
530.1 MES
530.1 SHE
530.11
530.11 BEL
530.11 INT
530.11 LAM
530.11 MOO
530.11 PAR
530.11 SAL
530.11 SEM
530.11 TAH
530.11 VIL
530.12 CAR
530.12 COH
530.12 COR
530.12 DUB
530.12 FEY
530.12 FUK
530.12 MEC
530.12 SAF
530.120 ASL
530.13 ABR
530.13 HAN
530.13 LAN
530.13 MEJ
530.13 ROP
530.13 SAT
530.14 FIN
530.14 LEH
530.14 PHY
530.142 PLA
530.143 STO
530.143 SYS
530.145 TEX
530.15 LES
530.15 MAM
530.15 POI
530.3 Dictionnaires et encyclopédies de physique
530.4 LAG
530.413 ILD
530.416 FOR
530.417 LAL
530.42 LEG
530.429 PIN
530.44 BAL
530.44 MEL
530.7 Etude et enseignement de la physique : ouvrages parascolaires, annales
530.7 WIL
530.8 BAR
530.9 Histoire de la physique, Biographies de physiciens
530413
530 (Physique Ouvrages généraux, Théories (dont théorie des quanta))
530 BEU
530 DEV
530 EYM
530 FIZ
530 HAK
530 LUM
530 RAD
530 WAL
530.01 FRO
530.01 HAK
530.01 LES
530.02 KAR
530.02 PHY
530.03
530.06 BOU
530.07 CHO
530.07 CLA
530.07 ENO
530.07 MES
530.07 PHY
530.07 THO
530.071 VIE
530.076 BAC
530.076 BER
530.076 BEU
530.076 ESC
530.076 PHY
530.076 SAL
530.076 SAN
530.076 THO
530.092 BAR
530.092 DIE
530.1 BLO
530.1 BOU
530.1 KAN
530.1 KLA
530.1 LAK
530.1 LAN
530.1 LIF
530.1 MES
530.1 SHE
530.11
530.11 BEL
530.11 INT
530.11 LAM
530.11 MOO
530.11 PAR
530.11 SAL
530.11 SEM
530.11 TAH
530.11 VIL
530.12 CAR
530.12 COH
530.12 COR
530.12 DUB
530.12 FEY
530.12 FUK
530.12 MEC
530.12 SAF
530.120 ASL
530.13 ABR
530.13 HAN
530.13 LAN
530.13 MEJ
530.13 ROP
530.13 SAT
530.14 FIN
530.14 LEH
530.14 PHY
530.142 PLA
530.143 STO
530.143 SYS
530.145 TEX
530.15 LES
530.15 MAM
530.15 POI
530.3 Dictionnaires et encyclopédies de physique
530.4 LAG
530.413 ILD
530.416 FOR
530.417 LAL
530.42 LEG
530.429 PIN
530.44 BAL
530.44 MEL
530.7 Etude et enseignement de la physique : ouvrages parascolaires, annales
530.7 WIL
530.8 BAR
530.9 Histoire de la physique, Biographies de physiciens
530413
Ouvrages de la bibliothèque en indexation 530.12 GRE
Affiner la rechercheRelativistic Quantum Mechanics. Wave Equations / Walter Greiner
Titre : Relativistic Quantum Mechanics. Wave Equations : With 62 Figures and 89 Worked Examples and Problems Type de document : texte imprimé Auteurs : Walter Greiner, Auteur Mention d'édition : 3rd edition Editeur : Berlin : Springer Année de publication : 1996 Importance : 424 p Présentation : ill., couv. ill. en coul Format : 19*25 cm ISBN/ISSN/EAN : 978-3-540-67457-3 Prix : 96,29 € Note générale : Index Langues : Anglais (eng) Mots-clés : Dirac equation Neutrino Quantenmechanik Handbuch/Lehrbuch quantum mechanics Index. décimale : 530.12 GRE Résumé : Relativistic Quantum Mechanics - Wave Equations concentrates mainly on the wave equations for spin-0 and spin-1/2 particles. Chapter 1 deals with the Klein-Gordon equation and its properties and applications. The chapters that follow introduce the Dirac equation, investigate its covariance properties and present various approaches to obtaining solutions. Numerous applications are discussed in detail, including the two-center Dirac equation, hole theory, CPT symmetry, Klein's paradox, and relativistic symmetry principles. Chapter 15 presents the relativistic wave equations for higher spin (Proca, Rarita-Schwinger, and Bargmann-Wigner). The extensive presentation of the mathematical tools and the 62 worked examples and problems make this a unique text for an advanced quantum mechanics course. Note de contenu : 1. Relativistic Wave Equation for Spin-0 Particles: The Klein—Gordon Equation and Its Applications.- 2. A Wave Equation for Spin-½ Particles: The Dirac Equation.- 3. Lorentz Covariance of the Dirac Equation.- 4. Spinors Under Spatial Reflection.- 5. Bilinear Covariants of the Dirac Spinors.- 6. Another Way of Constructing Solutions of the Free Dirac Equation: Construction by Lorentz Transformations.- 7. Projection Operators for Energy and Spin.- 8. Wave Packets of Plane Dirac Waves.- 9. Dirac Particles in External Fields: Examples and Problems.- 10.The Two-Centre Dirac Equation.- 11. The Foldy-Wouthuysen Representation for Free Particles.- 12. The Hole Theory.- 13. Klein’s Paradox.- 14. The Weyl Equation — The Neutrino.- 15. Wave Equations for Particles with Arbitrary Spins.- 16. Lorentz Invariance and Relativistic Symmetry Principles. Relativistic Quantum Mechanics. Wave Equations : With 62 Figures and 89 Worked Examples and Problems [texte imprimé] / Walter Greiner, Auteur . - 3rd edition . - Berlin : Springer, 1996 . - 424 p : ill., couv. ill. en coul ; 19*25 cm.
ISBN : 978-3-540-67457-3 : 96,29 €
Index
Langues : Anglais (eng)
Mots-clés : Dirac equation Neutrino Quantenmechanik Handbuch/Lehrbuch quantum mechanics Index. décimale : 530.12 GRE Résumé : Relativistic Quantum Mechanics - Wave Equations concentrates mainly on the wave equations for spin-0 and spin-1/2 particles. Chapter 1 deals with the Klein-Gordon equation and its properties and applications. The chapters that follow introduce the Dirac equation, investigate its covariance properties and present various approaches to obtaining solutions. Numerous applications are discussed in detail, including the two-center Dirac equation, hole theory, CPT symmetry, Klein's paradox, and relativistic symmetry principles. Chapter 15 presents the relativistic wave equations for higher spin (Proca, Rarita-Schwinger, and Bargmann-Wigner). The extensive presentation of the mathematical tools and the 62 worked examples and problems make this a unique text for an advanced quantum mechanics course. Note de contenu : 1. Relativistic Wave Equation for Spin-0 Particles: The Klein—Gordon Equation and Its Applications.- 2. A Wave Equation for Spin-½ Particles: The Dirac Equation.- 3. Lorentz Covariance of the Dirac Equation.- 4. Spinors Under Spatial Reflection.- 5. Bilinear Covariants of the Dirac Spinors.- 6. Another Way of Constructing Solutions of the Free Dirac Equation: Construction by Lorentz Transformations.- 7. Projection Operators for Energy and Spin.- 8. Wave Packets of Plane Dirac Waves.- 9. Dirac Particles in External Fields: Examples and Problems.- 10.The Two-Centre Dirac Equation.- 11. The Foldy-Wouthuysen Representation for Free Particles.- 12. The Hole Theory.- 13. Klein’s Paradox.- 14. The Weyl Equation — The Neutrino.- 15. Wave Equations for Particles with Arbitrary Spins.- 16. Lorentz Invariance and Relativistic Symmetry Principles. Exemplaires
Code-barres Cote Support Localisation Section Disponibilité FSEI19/127-2 530.12 GRE Ouvrage Bibliothèque de la Faculté des Sciences Physique Disponible