paper

Quantum confined Rydberg excitons in CuO nanoparticles

arXiv:2011.12006 · doi:10.1103/PhysRevB.103.245426

Abstract

The quantum confinement of Rydberg excitons is an important step towards exploiting their large nonlinearities for quantum applications. We observe Rydberg excitons in natural nanoparticles of CuO. We resolve up to the principal quantum number in a bulk CuO crystal and up to in nanoparticles extracted from the same crystal. The exciton transitions in nanoparticles are broadened and their oscillator strengths decrease as compared to those in the bulk (decreasing as ). We explain our results by including the effect of quantum confinement of exciton states in the nanoparticles. Our results provide an understanding of the physics of CuO Rydberg excitons in confined dimensions.

5 pages, 5 figures