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Titre : Quantum liquids : Bose condensation and Cooper pairing in condensed-matter systems Type de document : texte imprimé Auteurs : A.J. Leggett, Auteur Editeur : Oxford : Oxford University Press Année de publication : 2006 Collection : Oxford graduate texts Importance : 1 vol. (XV-388 p.) Présentation : ill. Format : 26 cm ISBN/ISSN/EAN : 978-0-19-852643-8 Note générale : Bibliogr. p. [373]-379- Index Langues : Anglais (eng) Mots-clés : Bose-Einstein condensation Helium Quantum liquids Superconductivity Index. décimale : 530.42 LEG Résumé : Starting from first principles, this book introduces the closely related phenomena of Bose condensation and Cooper pairing, in which a very large number of single particles or pairs of particles are forced to behave in exactly the same way, and explores their consequences in condensed matter systems. Eschewing advanced formal methods, the author uses simple concepts and arguments to account for the various qualitatively new phenomena which occur in Bose-condensed and
Cooper-paired systems, including but not limited to the spectacular macroscopic phenomena of superconductivity and superfluidity. The physical systems discussed include liquid 4-He, the BEC alkali gases, "classical" superconductors, superfluid 3-He, "exotic" superconductors and the recently
stabilized Fermi alkali gases. The book should be accessible to beginning graduate students in physics or advanced undergraduates.Note de contenu : 1. Introduction:quantum statistics,Bose-Einstein condensation and Cooper pairing. ; 2. Bose-Einstein condensation:its definition,origin,occurrence and consequences. ; 3. Liquid 4-He. ; 4. The Bose alkali gases. ; 5. Classical superconductivity. ; 6. Superfluid 3-He ; 7. Cuprate superconductivity. ; 8. Miscellaneous topics. Quantum liquids : Bose condensation and Cooper pairing in condensed-matter systems [texte imprimé] / A.J. Leggett, Auteur . - [S.l.] : Oxford : Oxford University Press, 2006 . - 1 vol. (XV-388 p.) : ill. ; 26 cm. - (Oxford graduate texts) .
ISBN : 978-0-19-852643-8
Bibliogr. p. [373]-379- Index
Langues : Anglais (eng)
Mots-clés : Bose-Einstein condensation Helium Quantum liquids Superconductivity Index. décimale : 530.42 LEG Résumé : Starting from first principles, this book introduces the closely related phenomena of Bose condensation and Cooper pairing, in which a very large number of single particles or pairs of particles are forced to behave in exactly the same way, and explores their consequences in condensed matter systems. Eschewing advanced formal methods, the author uses simple concepts and arguments to account for the various qualitatively new phenomena which occur in Bose-condensed and
Cooper-paired systems, including but not limited to the spectacular macroscopic phenomena of superconductivity and superfluidity. The physical systems discussed include liquid 4-He, the BEC alkali gases, "classical" superconductors, superfluid 3-He, "exotic" superconductors and the recently
stabilized Fermi alkali gases. The book should be accessible to beginning graduate students in physics or advanced undergraduates.Note de contenu : 1. Introduction:quantum statistics,Bose-Einstein condensation and Cooper pairing. ; 2. Bose-Einstein condensation:its definition,origin,occurrence and consequences. ; 3. Liquid 4-He. ; 4. The Bose alkali gases. ; 5. Classical superconductivity. ; 6. Superfluid 3-He ; 7. Cuprate superconductivity. ; 8. Miscellaneous topics. Réservation
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Code-barres Cote Support Localisation Section Disponibilité FSEI18/0100-2 530.42 LEG Ouvrage Bibliothèque de la Faculté des Sciences Exactes et Informatique Physique Disponible
Titre : BOSE-CONDENSED GASES AT FINITE TEMPERATURES Type de document : texte imprimé Auteurs : Griffin,Allan., Auteur ; Tetsuro, Nikuni ; Eugene, Zaremba Editeur : Cambridge University Press: Verlag Année de publication : 2009 Importance : 426 p Format : 26 cm ISBN/ISSN/EAN : 978-0-521-83702-6 Prix : 158,95 € Langues : Anglais (eng) Mots-clés : Bose-Einstein condensation Gas Hydrodynamics Superfluidity Vortex Index. décimale : 536.44 GRI Résumé : The first treatment of Bose–Einstein condensation at finite temperatures, this book presents a thorough account of the theory of two-component dynamics and nonequilibrium behaviour in superfluid Bose gases for researchers and graduate students in ultracold atom physics, atomic, molecular and optical physics, and condensed matter physics.
The discovery of Bose–Einstein condensation (BEC) in trapped ultracold atomic gases in 1995 has led to an explosion of theoretical and experimental research on the properties of Bose-condensed dilute gases. The first treatment of BEC at finite temperatures, this book presents a thorough account of the theory of two-component dynamics and nonequilibrium behaviour in superfluid Bose gases. It uses a simplified microscopic model to give a clear, explicit account of collective modes in both the collisionless and collision-dominated regions. Major topics such as kinetic equations, local equilibrium and two-fluid hydrodynamics are introduced at an elementary level. Explicit predictions are worked out and linked to experiments. Providing a platform for future experimental and theoretical studies on the finite temperature dynamics of trapped Bose gases, this book is ideal for researchers and graduate students in ultracold atom physics, atomic, molecular and optical physics and condensed matter physics.BOSE-CONDENSED GASES AT FINITE TEMPERATURES [texte imprimé] / Griffin,Allan., Auteur ; Tetsuro, Nikuni ; Eugene, Zaremba . - [S.l.] : Cambridge University Press: Verlag, 2009 . - 426 p ; 26 cm.
ISBN : 978-0-521-83702-6 : 158,95 €
Langues : Anglais (eng)
Mots-clés : Bose-Einstein condensation Gas Hydrodynamics Superfluidity Vortex Index. décimale : 536.44 GRI Résumé : The first treatment of Bose–Einstein condensation at finite temperatures, this book presents a thorough account of the theory of two-component dynamics and nonequilibrium behaviour in superfluid Bose gases for researchers and graduate students in ultracold atom physics, atomic, molecular and optical physics, and condensed matter physics.
The discovery of Bose–Einstein condensation (BEC) in trapped ultracold atomic gases in 1995 has led to an explosion of theoretical and experimental research on the properties of Bose-condensed dilute gases. The first treatment of BEC at finite temperatures, this book presents a thorough account of the theory of two-component dynamics and nonequilibrium behaviour in superfluid Bose gases. It uses a simplified microscopic model to give a clear, explicit account of collective modes in both the collisionless and collision-dominated regions. Major topics such as kinetic equations, local equilibrium and two-fluid hydrodynamics are introduced at an elementary level. Explicit predictions are worked out and linked to experiments. Providing a platform for future experimental and theoretical studies on the finite temperature dynamics of trapped Bose gases, this book is ideal for researchers and graduate students in ultracold atom physics, atomic, molecular and optical physics and condensed matter physics.Réservation
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Exemplaires (1)
Code-barres Cote Support Localisation Section Disponibilité FSEI18/117-2 536.44 GRI Ouvrage Bibliothèque de la Faculté des Sciences Exactes et Informatique Physique Disponible

