Exact Diagonalization Approach for the infinite D Hubbard Model
摘要
We present a powerful method for calculating the thermodynamic properties of the Hubbard model in infinite dimensions, using an exact diagonalization of an Anderson model with a finite number of sites. At finite temperatures, the explicit diagonalization of the Anderson Hamiltonian allows the calculation of Green's functions with a resolution far superior to that of Quantum Monte Carlo calculations. At zero temperature, the Lancz\`os method is used and yields the essentially exact zero-temperature solution of the model, except in a region of very small frequencies. Numerical results for the half-filled case in the paramagnetic phase (quasi-particle weight, self-energy, and also real-frequency spectral densities) are presented.
引用
@article{arxiv.cond-mat/9306057,
title = {Exact Diagonalization Approach for the infinite D Hubbard Model},
author = {Michel Caffarel and Werner Krauth},
journal= {arXiv preprint arXiv:cond-mat/9306057},
year = {2007}
}
备注
7 pages, revtex, 4 postscript figures appended, LPQ preprint (1993)