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530.7 WIL
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 LEY
530.07 MES
530.07 PET
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 AYA
530.12 AYO
530.12 CAR
530.12 COH
530.12 COR
530.12 DIU
530.12 DUB
530.12 FEY
530.12 FUK
530.12 GRE
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
530.8 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 LEY
530.07 MES
530.07 PET
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 AYA
530.12 AYO
530.12 CAR
530.12 COH
530.12 COR
530.12 DIU
530.12 DUB
530.12 FEY
530.12 FUK
530.12 GRE
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
530.8 BAR
530.9 Histoire de la physique, Biographies de physiciens
530413
Ouvrages de la bibliothèque en indexation 530.7 WIL
Affiner la rechercheFrom Atom Optics to Quantum Simulation / Will, Sebastian
Titre : From Atom Optics to Quantum Simulation : Interacting Bosons and Fermions in Three-Dimensional Optical Lattice Potentials Type de document : texte imprimé Auteurs : Will, Sebastian, Auteur Editeur : Berlin : Springer Année de publication : 2013 Collection : Springer Theses Importance : 257p Présentation : couv. ill. en coul Format : 16*24cm ISBN/ISSN/EAN : 978-3-642-33632-4 Langues : Anglais (eng) Mots-clés : Atom Optics Quantum Simulation Index. décimale : 530.7 WIL Résumé : This thesis explores ultracold quantum gases of bosonic and fermionic atoms in optical lattices. The highly controllable experimental setting discussed in this work, has opened the door to new insights into static and dynamical properties of ultracold quantum matter. One of the highlights reported here is the development and application of a novel time-resolved spectroscopy technique for quantum many-body systems. By following the dynamical evolution of a many-body system after a quantum quench, the author shows how the important energy scales of the underlying Hamiltonian can be measured with high precision. This achievement, its application, and many other exciting results make this thesis of interest to a broad audience ranging from quantum optics to condensed matter physics. A lucid style of writing accompanied by a series of excellent figures make the work accessible to readers outside the rapidly growing research field of ultracold atoms. From Atom Optics to Quantum Simulation : Interacting Bosons and Fermions in Three-Dimensional Optical Lattice Potentials [texte imprimé] / Will, Sebastian, Auteur . - Berlin : Springer, 2013 . - 257p : couv. ill. en coul ; 16*24cm. - (Springer Theses) .
ISBN : 978-3-642-33632-4
Langues : Anglais (eng)
Mots-clés : Atom Optics Quantum Simulation Index. décimale : 530.7 WIL Résumé : This thesis explores ultracold quantum gases of bosonic and fermionic atoms in optical lattices. The highly controllable experimental setting discussed in this work, has opened the door to new insights into static and dynamical properties of ultracold quantum matter. One of the highlights reported here is the development and application of a novel time-resolved spectroscopy technique for quantum many-body systems. By following the dynamical evolution of a many-body system after a quantum quench, the author shows how the important energy scales of the underlying Hamiltonian can be measured with high precision. This achievement, its application, and many other exciting results make this thesis of interest to a broad audience ranging from quantum optics to condensed matter physics. A lucid style of writing accompanied by a series of excellent figures make the work accessible to readers outside the rapidly growing research field of ultracold atoms. Exemplaires
Code-barres Cote Support Localisation Section Disponibilité BC2014/4183-5 530.7 WIL Ouvrage Bibliothèque de la Faculté des Sciences Exactes et Informatique Physique Disponible BC2014/4183-7 530.7 WIL Ouvrage Bibliothèque de la Faculté des Sciences Exactes et Informatique Physique Disponible BC2014/4183-6 530.7 WIL Ouvrage Bibliothèque de la Faculté des Sciences Exactes et Informatique Physique Disponible BC2014/4183-1 BC.05-08-033 Ouvrage Bibliothèque Universitaire Centrale Physique Exclu du prêt BC2014/4183-3 BC.05-08-033 Ouvrage Bibliothèque Universitaire Centrale Physique Disponible BC2014/4183-2 BC.05-08-033 Ouvrage Bibliothèque Universitaire Centrale Physique Disponible