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539.5 MEN
539 Physique nucléaire, Atomes, Radioactivité
539 ASL
539 JAH
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539.1 BEN
539.1 FRE
539.1 MIN
539.1 PIT
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539.1 كان
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539.709 GRA
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539.764
539.77 ANT
539.77 NAP
539.77 PON
539.77 TUR
53972
539 ASL
539 JAH
539 THO
539.1 BAU
539.1 BEN
539.1 FRE
539.1 MIN
539.1 PIT
539.1 POP
539.1 ROS
539.1 كان
539.2 BRA
539.2 FAR
539.7 AIT
539.7 COH
539.7 KLH
539.7 LES
539.7 MAY
539.7 NOZ
539.7 STA
539.7 WIL
539.709 GRA
539.72 CLE
539.72 LEO
539.72 NAR
539.72 ROD
539.764
539.77 ANT
539.77 NAP
539.77 PON
539.77 TUR
53972
Ouvrages de la bibliothèque en indexation 539.5 MEN
Affiner la recherchePhysics of Ultra-Cold Matter / Mendonça, J.T
Titre : Physics of Ultra-Cold Matter : Atomic Clouds, Bose-Einstein Condensates and Rydberg Plasmas Type de document : texte imprimé Auteurs : Mendonça, J.T, Auteur ; Terças, Hugo, Auteur Editeur : Springer London Ltd Année de publication : 2013 Collection : Springer Series on Atomic, Optical, and Plasma Physics num. 70 Importance : 398p Présentation : couv. ill. Format : 24*16 cm ISBN/ISSN/EAN : 978-1-461-45413-7 Note générale : Index Langues : Anglais (eng) Mots-clés : Atomic Clouds Bose-Einstein Condensates Rydberg Plasmas Index. décimale : 539.5 MEN Résumé : The advent of laser cooling of atoms led to the discovery of ultra-cold matter, with temperatures below liquid Helium, which displays a variety of new physical phenomena. Physics of Ultra-Cold Matter gives an overview of this recent area of science, with a discussion of its main results and a description of its theoretical concepts and methods.
Ultra-cold matter can be considered in three distinct phases: ultra-cold gas, Bose Einstein condensate, and Rydberg plasmas. This book gives an integrated view of this new area of science at the frontier between atomic physics, condensed matter, and plasma physics. It describes these three distinct phases while exploring the differences, as well as the sometimes unexpected similarities, of their respective theoretical methods.
This book is an informative guide for researchers, and the benefits are a result from an integrated view of a very broad area of research, which is limited in previous books about this subject. The main unifying tool explored in this book is the wave kinetic theory based on Wigner functions. Other theoretical approaches, eventually more familiar to the reader, are also given for extension and comparison. The book considers laser cooling techniques, atom-atom interactions, and focuses on the elementary excitations and collective oscillations in atomic clouds, Bose-Einstein condensates, and Rydberg plasmas. Linear and nonlinear processes are considered, including Landau damping, soliton excitation and vortices. Atomic interferometers and quantum coherence are also included.Physics of Ultra-Cold Matter : Atomic Clouds, Bose-Einstein Condensates and Rydberg Plasmas [texte imprimé] / Mendonça, J.T, Auteur ; Terças, Hugo, Auteur . - [S.l.] : Springer London Ltd, 2013 . - 398p : couv. ill. ; 24*16 cm. - (Springer Series on Atomic, Optical, and Plasma Physics; 70) .
ISBN : 978-1-461-45413-7
Index
Langues : Anglais (eng)
Mots-clés : Atomic Clouds Bose-Einstein Condensates Rydberg Plasmas Index. décimale : 539.5 MEN Résumé : The advent of laser cooling of atoms led to the discovery of ultra-cold matter, with temperatures below liquid Helium, which displays a variety of new physical phenomena. Physics of Ultra-Cold Matter gives an overview of this recent area of science, with a discussion of its main results and a description of its theoretical concepts and methods.
Ultra-cold matter can be considered in three distinct phases: ultra-cold gas, Bose Einstein condensate, and Rydberg plasmas. This book gives an integrated view of this new area of science at the frontier between atomic physics, condensed matter, and plasma physics. It describes these three distinct phases while exploring the differences, as well as the sometimes unexpected similarities, of their respective theoretical methods.
This book is an informative guide for researchers, and the benefits are a result from an integrated view of a very broad area of research, which is limited in previous books about this subject. The main unifying tool explored in this book is the wave kinetic theory based on Wigner functions. Other theoretical approaches, eventually more familiar to the reader, are also given for extension and comparison. The book considers laser cooling techniques, atom-atom interactions, and focuses on the elementary excitations and collective oscillations in atomic clouds, Bose-Einstein condensates, and Rydberg plasmas. Linear and nonlinear processes are considered, including Landau damping, soliton excitation and vortices. Atomic interferometers and quantum coherence are also included.Exemplaires
Code-barres Cote Support Localisation Section Disponibilité aucun exemplaire Physics of Ultra-Cold Matter / Mendonça, J.T
Titre : Physics of Ultra-Cold Matter : Atomic Clouds, Bose-Einstein Condensates and Rydberg Plasmas Type de document : texte imprimé Auteurs : Mendonça, J.T, Auteur ; Terças, Hugo, Auteur Editeur : springer Année de publication : 2013 Collection : Springer series on atomic,optical,and plasma physics num. 70 Importance : XXII, 398 p. Présentation : ill Format : 15.5 x 23.5 cm ISBN/ISSN/EAN : 978-1-461-45412-0 Note générale : Index Langues : Anglais (eng) Mots-clés : atom-atom interactions Bose-Einstein condensates Fermi gases Landau damping laser cooling techniques Rydberg Atoms soliton excitation theory of ultra-cold matter ultra-cold gas book untracold plasmas Index. décimale : 539.5 MEN Résumé : The advent of laser cooling of atoms led to the discovery of ultra-cold matter, with temperatures below liquid Helium, which displays a variety of new physical phenomena. Physics of Ultra-Cold Matter gives an overview of this recent area of science, with a discussion of its main results and a description of its theoretical concepts and methods.
Ultra-cold matter can be considered in three distinct phases: ultra-cold gas, Bose Einstein condensate, and Rydberg plasmas. This book gives an integrated view of this new area of science at the frontier between atomic physics, condensed matter, and plasma physics. It describes these three distinct phases while exploring the differences, as well as the sometimes unexpected similarities, of their respective theoretical methods.
This book is an informative guide for researchers, and the benefits are a result from an integrated view of a very broad area of research, which is limited in previous books about this subject. The main unifying tool explored in this book is the wave kinetic theory based on Wigner functions. Other theoretical approaches, eventually more familiar to the reader, are also given for extension and comparison. The book considers laser cooling techniques, atom-atom interactions, and focuses on the elementary excitations and collective oscillations in atomic clouds, Bose-Einstein condensates, and Rydberg plasmas. Linear and nonlinear processes are considered, including Landau damping, soliton excitation and vortices. Atomic interferometers and quantum coherence are also included.Note de contenu : Introduction.- Laser Cooling.- Wave Kinetic Approach.- Atomic Clouds.- Waves and Oscillations in Clouds.- Photons in the Ultra-Cold Gas.- Bose Einstein Condensates.- Elementary Excitations in BECs.- Solitons.- Quantum Field Theory of BECs.- Superfluidity.- Rotating BECs.- Quantum Coherence.- Ultra-Cold Plasmas.- Physics of Rydberg Plasmas.- Waves in Rydberg Plasmas.- Kinetic Theory of Waves.- Conclusions.- Appendix. Physics of Ultra-Cold Matter : Atomic Clouds, Bose-Einstein Condensates and Rydberg Plasmas [texte imprimé] / Mendonça, J.T, Auteur ; Terças, Hugo, Auteur . - [S.l.] : springer, 2013 . - XXII, 398 p. : ill ; 15.5 x 23.5 cm. - (Springer series on atomic,optical,and plasma physics; 70) .
ISBN : 978-1-461-45412-0
Index
Langues : Anglais (eng)
Mots-clés : atom-atom interactions Bose-Einstein condensates Fermi gases Landau damping laser cooling techniques Rydberg Atoms soliton excitation theory of ultra-cold matter ultra-cold gas book untracold plasmas Index. décimale : 539.5 MEN Résumé : The advent of laser cooling of atoms led to the discovery of ultra-cold matter, with temperatures below liquid Helium, which displays a variety of new physical phenomena. Physics of Ultra-Cold Matter gives an overview of this recent area of science, with a discussion of its main results and a description of its theoretical concepts and methods.
Ultra-cold matter can be considered in three distinct phases: ultra-cold gas, Bose Einstein condensate, and Rydberg plasmas. This book gives an integrated view of this new area of science at the frontier between atomic physics, condensed matter, and plasma physics. It describes these three distinct phases while exploring the differences, as well as the sometimes unexpected similarities, of their respective theoretical methods.
This book is an informative guide for researchers, and the benefits are a result from an integrated view of a very broad area of research, which is limited in previous books about this subject. The main unifying tool explored in this book is the wave kinetic theory based on Wigner functions. Other theoretical approaches, eventually more familiar to the reader, are also given for extension and comparison. The book considers laser cooling techniques, atom-atom interactions, and focuses on the elementary excitations and collective oscillations in atomic clouds, Bose-Einstein condensates, and Rydberg plasmas. Linear and nonlinear processes are considered, including Landau damping, soliton excitation and vortices. Atomic interferometers and quantum coherence are also included.Note de contenu : Introduction.- Laser Cooling.- Wave Kinetic Approach.- Atomic Clouds.- Waves and Oscillations in Clouds.- Photons in the Ultra-Cold Gas.- Bose Einstein Condensates.- Elementary Excitations in BECs.- Solitons.- Quantum Field Theory of BECs.- Superfluidity.- Rotating BECs.- Quantum Coherence.- Ultra-Cold Plasmas.- Physics of Rydberg Plasmas.- Waves in Rydberg Plasmas.- Kinetic Theory of Waves.- Conclusions.- Appendix. Exemplaires
Code-barres Cote Support Localisation Section Disponibilité FSEI16/005-2 539.5 MEN Ouvrage Bibliothèque de la Faculté des Sciences Exactes et Informatique Physique Disponible