paper

Accurate Computation of the Magnetic Susceptibility for the Normal Phase of Organic Conductors

arXiv:cond-mat/0011169

Abstract

The magnetic susceptibility of the quarter-filled one-dimensional extended Hubbard model is calculated using the density-matrix renormalization group technique. It is found that in the charge gap regime of the model ( and ), or in the metallic region with important superconductive fluctuations ( and ), displays a singularity at T=0 and an inflection point at low temperatures that are similar to what occurs in the spin-half quantum spin chain. These results, whose accuracy outdoes that of any other available technique, are useful data which allow a comparison between theory and experiment in the normal phase of the organic conductors.

4 pages, 3 figures