Large-N expansion based on the Hubbard-operator path integral representation and its application to the model
arXiv:cond-mat/0203258 · doi:10.1103/PhysRevB.65.195107
Abstract
In the present work we have developed a large-N expansion for the model based on the path integral formulation for Hubbard-operators. Our large-N expansion formulation contains diagrammatic rules, in which the propagators and vertex are written in term of Hubbard operators. Using our large-N formulation we have calculated, for J=0, the renormalized boson propagator. We also have calculated the spin-spin and charge-charge correlation functions to leading order 1/N. We have compared our diagram technique and results with the existing ones in the literature.
6 pages, 3 figures, Phys.Rev.B (in press)
Cited by in corpus (22)
- Possible charge instabilities in two-dimensional doped Mott insulators
- Dynamical properties of a strongly correlated model for quarter-filled layered organic molecular crystals
- Superconductivity in high- and related strongly correlated systems from variational perspective: Beyond mean field theory
- Large-N expansion based on the Hubbard operator path integral representation and its application to the t-J model II. The case for finite
- A unified theory of spin and charge excitations in high- cuprates: Quantitative comparison with experiment and interpretation
- One-electron self energies and spectral functions for the t-J model in the large-N limit
- Kronecker product in terms of Hubbard operators and the Clebsch-Gordan decomposition of SU(2)xSU(2)
- On singular Lagrangians affine in velocities
- Influence of Magnetism and Correlation on the Spectral Properties of Doped Mott Insulators
- Cooperative effect of phonons and electronic correlations for superconductivity in cobaltates
- Spin exchange and superconductivity in a model for two-dimensional quarter-filled systems
- Electron self-energy from quantum charge fluctuations in the layered t-J model with long-range Coulomb interaction
- Charge-Density-Excitation Spectrum in the t-t'-J-V Model
- Electron-phonon interaction dressed by electronic correlations near charge ordering as the origin for superconductivity in cobaltates
- Superconductivity with and without glue and the role of the double-occupancy forbidding constraint in the t-J-V model
- Universal collective modes from strong electronic correlations: Modified theory with application to high- cuprates
- Role of dynamical non-double-occupancy excitations on the quasiparticle damping of the model in the large- limit
- Plasmarons in high-temperature cuprate superconductors
- One-particle spectral properties of the t-J- model on the triangular lattice near charge order
- Strong-coupling theory of bilayer plasmon excitations
- Beyond on-site Hubbard interaction in charge dynamics of cuprate superconductors
- Theoretical perspectives on charge dynamics in high-temperature cuprate superconductors