Effective interactions and superconductivity in the t-J model in the large-N limit
arXiv:cond-mat/9808283 · doi:10.1007/s100510050574
Abstract
The feasibility of a perturbation expansion for Green's functions of the t-J model directly in terms of X-operators is demonstrated using the Baym- Kadanoff functional method. As an application we derive explicit expressions for the kernel of the linearized equation for the superconducting order parameter in leading order of a 1/N expansion. The linearized equation is solved numerically on a square lattice. We find that a reasonably strong instability occurs only for even frequency pairing with d-wavelike symmetry. Results for the transition temperature and the effective interaction are given as a function of doping.
31 pages, 11 figures
Cited by in corpus (15)
- Possible charge instabilities in two-dimensional doped Mott insulators
- Dynamical properties of a strongly correlated model for quarter-filled layered organic molecular crystals
- Large-N expansion based on the Hubbard operator path integral representation and its application to the t-J model II. The case for finite
- Influence of collective effects and the d-CDW on electronic Raman scattering in high-T superconductors
- Large-N expansion based on the Hubbard-operator path integral representation and its application to the model
- Low-energy renormalization of the electron dispersion of high-T superconductors
- Electronic correlations, electron-phonon interaction, and isotope effect in high-Tc cuprates
- Spin exchange and superconductivity in a model for two-dimensional quarter-filled systems
- Superconductivity with and without glue and the role of the double-occupancy forbidding constraint in the t-J-V model
- Influence of spin fluctuations on the superconducting transition temperature and resistivity in the t-J model at large N
- Violation of Luttinger's theorem in strongly correlated electronic systems within a 1/N expansion
- Collective excitations in unconventional charge-density wave systems
- Competition between superconductivity and the pseudogap phase in the t-J model
- Self-energy effects in cuprates and the dome-shaped behavior of the superconducting critical temperature
- Interplay of superconductivity with structural phases in a generalized t-J model