PaperPanorama

arXiv:cond-mat/0101173·v1·Strongly Correlated Electrons

Pigmy resonances in artificial nuclei: far-infrared absorption by electron-hole droplets

Roberto Capote (1,2)🇪🇸 · Alain Delgado(2)🇨🇺 · Augusto Gonzalez (3,4) ((1) Universidad de Sevilla, Spain, (2) CEADEN, Habana, Cuba, (3) Universidad de Antioquia, Colombia,(4) ICIMAF, Habana, Cuba)🇨🇺

Abstract

The structure of E1 resonances is examined in a microscopic random phase approximation calculation for neutral, symmetric, closed shell, electron-hole systems in a quantum dot. The number of electron-hole pairs, N, is varied from 6 to 42. The ocurrence of small, but distinct, E1 peaks in the far infrared spectra located in the low energy tail of the giant dipole resonance and consisting of highly coherent electron-hole excitations is predicted. These pigmy resonances account for about 2 % of the dipole energy-weighted photoabsorption sum rule. A very weak dependence of the average pigmy resonance energy on the number of electron-hole pairs is found.

Comments: LaTeX, 4 pages, 2 figures, submitted to Phys.Rev.A

Citation historyopen in Citation History ↗