arXiv · cond-mat/0412565
The one-particle Green's function of one.dimensional insulating materials
Abstract
The single particle spectral-weight function (SWF) of the ionic Hubbard model at half filling is calculated in the cluster perturbation theory approximation. An abrupt change of regime in the low-energy region, near the chemical potential, is found at a critical value, $U_{c}$, of the coupling constant (Hubbard $U$). The SWF at the Fermi points $k_{F}$=$\pmπ/2$ jumps, as $U$ increases, from a two-peak structure, the gap edges, to a four-peak structure accompanied by a (non-vanishing) minimum of the charge-gap. The two inner peaks of this structure show very small dispersion (flat bands) away from the Fermi points, whereas the outer peaks mark the edges of the Hubbard bands. No other signatures of abrupt change are detected in the SWF. The two regimes are physically realized in the angle-resolved photoelectron spectra of $(TaSe_{4})_{2}I$, and the blue-bronze $K_{0.3}MoO_{3}$, respectively.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
M. C. Refolio, J. M. Lopez Sancho, J. Rubio, J. A. Verges. 2004-12-21. The one-particle Green's function of one.dimensional insulating materials. https://arxiv.org/abs/cond-mat/0412565
Cite the original work for its findings. Save a collection to share your selection of sources.