Controlling quantum-dot light absorption and emission by a surface-plasmon field
Abstract
The possibility for controlling the probe-field optical gain and absorption switching and photon conversion by a surface-plasmon-polariton near field is explored for a quantum dot above the surface of a metal. In contrast to the linear response in the weak-coupling regime, the calculated spectra show an induced optical gain and a triply-split spontaneous emission peak resulting from the interference between the surface-plasmon field and the probe or self-emitted light field in such a strongly-coupled nonlinear system. Our result on the control of the mediated photon-photon interaction, very similar to the `gate' control in an optical transistor, may be experimentally observable and applied to ultra-fast intrachip/interchip optical interconnects, improvement in the performance of fiber-optic communication networks and developments of optical digital computers and quantum communications.
Cite
@article{arxiv.1407.3209,
title = {Controlling quantum-dot light absorption and emission by a surface-plasmon field},
author = {Danhong Huang and Michelle Easter and Godfrey Gumbs and A. A. Maradudin and Shawn-Yu Lin and Dave Cardimona and Xiang Zhang},
journal= {arXiv preprint arXiv:1407.3209},
year = {2023}
}
Comments
7 pages, 15 figures