Modern trends in superconductivity and superfluidity

This book concisely presents the latest trends in the physics of superconductivity and superfluidity and magnetism in novel systems, as well as the problem of BCS-BEC crossover in ultracold quantum gases and high-Tc superconductors. It further illuminates the intensive exchange of ideas between thes...

Deskribapen osoa

Gorde:
Xehetasun bibliografikoak
Egile nagusia: Kagan, M. Yu
Formatua: Livre numérique
Hizkuntza:Anglais
Argitaratua: Dordrecht : Springer Netherlands [20..].
Cham : Springer Nature
Edizioa:1st ed. 2013.
Saila:Lecture Notes in Physics 874
Sarrera elektronikoa:Accès sur la plateforme de l'éditeur
Accès sur la plateforme Istex
Accès Université d'Orléans
Accès INSA CVL
Oharra: Archives Springer e-books (Licence nationale)
Archives Springer e-books (Licence nationale)
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Edition sous un autre format:• Modern trends in Superconductivity and Superfluidity, by M. Yu. Kagan, Dordrecht, Springer, 2013, 1 vol. (xxiv, 550 p.), Lecture Notes in Physics, 978-94-007-6960-1
• Modern trends in Superconductivity and Superfluidity, Texte imprimé, 9789400769625
• Modern trends in Superconductivity and Superfluidity, by M. Yu. Kagan, Dordrecht, Springer, 2013, 1 vol. (xxiv, 550 p.), Lecture Notes in Physics, 978-94-007-6960-1
• Modern trends in Superconductivity and Superfluidity, Texte imprimé, 9789400769625
• Modern trends in Superconductivity and Superfluidity, by M. Yu. Kagan, Dordrecht, Springer, 2013, 1 vol. (xxiv, 550 p.), Lecture Notes in Physics, 978-94-007-6960-1
Aurkibidea:
  • Introduction Part I Hydrodynamics of rotating superfluids with quantized vortices The foundation of Landau theory for superfluid hydrodynamics Hydrodynamics of rotating superfluids.- Hydrodynamics of fast rotations Opposite case of a single bended vortex line for extremely slow rotations ( ~ C1) Experimental situation and discussion. How to achieve the limit of the fast rotations at not very high frequencies in He II 3He mixtures and in superfluid 3He-B Reference list to Chapter 1 2. Quantum crystals. The search of supersolidity Quantum crystals. Phase diagram. The search of supersolidity The surface physics of quantum crystals. Atomically smooth and atomically rough surfaces.-Reference list to Chapter 2 Melting-crystallization waves on the phase-interface between quantum crystal and superfluid Surface hydrodynamics for rough surface at low temperatures Surface hydrodynamics of the mobile rough interface at  and in the presence of 3He impurities Reference list to Chapter 3 Quantum hydrodynamics of the p-wave superfluids with the symmetry of 3He-A Orbital hydrodynamics of bosonic and fermionic superfluids with the symmetry of A-phase of 3He Two approaches to a complicated problem of chiral anomaly, anomalous current in fermionic (BCS) A-phase Reference list to Chapter 4 Part II Bose-Einstein condensation and Feshbach resonance in ultracold quantum gases and mixtures BEC in trapped Bose-gasses Feshbach resonance in ultracold quantum gases and mixtures.- Experiments on molecular BEC in 6Li and 40K Reference list to Chapter 5 Composed particles, trios and quartets in resonance quantum gasses and mixtures Two-particle pairing and phase-separation in Bose-gas with one or two sorts of bosons.- Composed fermions in the Fermi-Bose mixture with attractive interaction between fermions and bosons Bound states of three and four resonantly interacting particles Reference list to Chapter 6 BCS-BEC crossover and the spectrum of collective excitations in s-wave and p-wave resonance superfluids Phase-diagram of the resonance Fermi-gas in 3D and 2D Self-consistent Leggett theory for T = 0 in 3D and 2D case Anderson-Bogolubov theory for collective excitations Feshbach resonance and phase-diagram for p-wave superfluid Fermi-gas Reference list to Chapter 7 Phase diagrams and the physics of the pseudogap in the superconductors with attractive interaction Attractive-U fermionic Hubbard model Attracting fermions in 2D T-matrix approximation Experimental predictions of the model Reference list to Chapter 8 Part III Superconductivity in the low-density electron systems with repulsion Kohn-Luttinger mechanism of SC in purely repulsive Fermi-systems Unconventional (anomalous) superconductive materials SC in 3D and 2D Hubbard model with repulsion at low electron density SC in the jelly model for Coulomb electron plasma SC and phase separation in Shubin-Vonsovsky model Reference list to Chapter 9 Strong TC enhancement in spin-polarized Fermi-gas and in the two-band superconductors.-  TC enhancement in a spin-polarized neutral Fermi-gas.-  TC enhancement in quasi-2D charged SC in a parallel magnetic field Strong TC enhancement in the two-band model Reference list to Chapter 10