The Electronic Thermal Conductivity and Other Properties of "gapless" Superconductors |
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Abrikosov anisotropic assume attenuation coefficient Chapter computing conduction electrons consider contribution Cooper pairs CORNELL correlation functions coupling defined density dependence discussion dw w² sech effect electron-phonon electronic thermal conductivity energy gap equations of motion exchange interaction exchange scattering factor Fermi surface film finite frequency gapless given Gor'kov order parameter Green's functions Hamiltonian hence impurity average impurity scattering impurity spins integral isotropic Kadanoff Kadanoff and Falko Ks/Kn Kubo formula longitudinal sound wave low temperatures lowest order magnetic field magnetic impurities Maki Maki's matrix mean free path momentum non-magnetic impurities normal metal paramagnetic alloy particle Green's functions persistent currents perturbation phonon Phys properties pure superconductor quasi-particle reduces region result S-wave S₂ Section self-consistent self-energy single particle Green's spectral spin-lattice relaxation superconducting alloy superconductor theory thermal conductivity time-reversal V₂ vertex corrections w₁ w₂