Unconventional superconductivity after the BCS paradigm and empirical rules for the exploration of high temperature superconductors
arXiv:2207.10847 · doi:10.1088/1742-6596/2323/1/012001
Abstract
Superconducting state is achieved through quantum condensation of Cooper pairs which are new types of charge carriers other than single electrons in normal metals. The theory established by Bardeen-Cooper-Schrieffer (BCS) in 1957 can successfully explain the phenomenon of superconductivity in many single-element and alloy superconductors. Within the BCS scheme, the Cooper pairs are formed by exchanging the virtual vibrations of lattice (phonons) between two electrons with opposite momentum near the Fermi surface. The BCS theory has dominated the field of superconductivity over 64 years. Many superconductors discovered in past four decades, such as the heavy Fermion superconductors, cuprates, iron pnictide/chalcogenide and nickelates seem, however, to strongly violate the BCS picture. The most important issue is that, perhaps the BCS picture based on electron-phonon coupling are the special case for superconductivity, there are a lot of other reasons or routes for the Cooper pairing and superconductivity. In this short overview paper, we will summarize part of these progresses and try to guide readers to some new possible schemes of superconductivity after the BCS paradigm. We also propose several empirical rules for the exploration of high-temperature unconventional superconductors.
11 pages, 7 figures. Plenary Talk at ISS2021
References in corpus (8)
- Unconventional pairing originating from disconnected Fermi surfaces in superconducting LaFeAsOF}
- Strong Correlations and Magnetic Frustration in the High Tc Iron Pnictides
- Is LaOFFeAs an electron-phonon superconductor ?
- Pairing Symmetry in a Two-Orbital Exchange Coupling Model of Oxypnictides
- A Sharp Peak of the Zero-Temperature Penetration Depth at Optimal Composition in BaFe2(As1-xPx)2
- Spin resonance in the d-wave superconductor CeCoIn5
- Quantum spin correlations through the superconducting-normal phase transition in electron-doped superconducting Pr0.88LaCe0.12CuO4-d
- Magnetic excitations in infinite-layer nickelates