arXiv · 0803.2907
Excitonic States in Medium-Size Quantum Dots
Abstract
In a quantum dot with dozens of electrons, an approximation beyond Tamm-Dankoff is used to construct the quantum states with an additional electron-hole pair, i.e. the "excitonic" states. The lowest states mimic the non-interacting spectrum, but with excitation gaps renormalized by Coulomb interactions. At higher excitation energies, the computed density of energy levels shows an exponential increase with energy. In the interband absorption, we found a background level in the quasicontinuum of states rising linearly with the excitation energy. Above this background, there are distinct peaks related to single resonances or to groups of many states with small interband dipole moments.
Explore related subjects
Keep this discovery
Alexander Odriazola, Alain Delgado, Augusto Gonzalez. 2008-10-31. Excitonic States in Medium-Size Quantum Dots. https://doi.org/10.1103/physrevb.78.035329
Cite the original work for its findings. Save a collection to share your selection of sources.