Extremely Correlated Superconductors
arXiv:2102.08395 · doi:10.1016/j.aop.2021.168614
Abstract
Superconductivity in the t-J model is studied by extending the recently introduced extremely correlated fermi liquid theory. Exact equations for the Greens functions are obtained by generalizing Gor'kov's equations to include extremely strong local repulsion between electrons of opposite spin. These equation are expanded in a parameter representing the fraction of double occupancy, and the lowest order equations are further simplified near , resulting in an approximate integral equation for the superconducting gap. The condition for is studied using a model spectral function embodying a reduced quasiparticle weight near half-filling, yielding an approximate analytical formula for . This formula is evaluated using parameters representative of single layer High- systems. In a narrow range of electron densities that is necessarily separated from the Mott-Hubbard insulator at half filling, we find superconductivity with a typical K.
31 pages, 5 figures
References in corpus (5)
- Doping evolution of the electronic structure in the single-layer cuprates BiSrLaCuO: Comparison with other single-layer cuprates
- Extremely Correlated Fermi Liquids
- Extremely Correlated Fermi Liquid Description of Normal State ARPES in Cuprates
- Extremely Correlated Fermi Liquids: The Formalism
- Diagrammatic series for extremely correlated Fermi liquids