Low-threshold directional plasmon lasing assisted by spatially coherent surface plasmon polaritons
Optics
2011-06-16 v1
Abstract
We theoretically propose directional, low-threshold plasmon lasing in both the near-infrared and visible wavelengths by utilizing spatially coherent surface plasmon polaritons on a meta-surface. The gain strength required for threshold lasing can be tuned down to a large extent through compatible structural parameters. Our calculations show that no more than 65 cm at 193.5 THz (1.55 m) or 267 cmat 474THz (0.633 m) of gain coefficient is sufficient to compensate for the dissipation of metal films for threshold lasing; these values are smaller than any reported studies at the same frequencies. These findings present a planar solid-state route for plasmon lasing that is highly efficient and spatially coherent.
Cite
@article{arxiv.1106.3002,
title = {Low-threshold directional plasmon lasing assisted by spatially coherent surface plasmon polaritons},
author = {Yang Cao and Zeyong Wei and Wei Li and Anan Fang and Hongqiang Li and Xunya Jiang and Hong Chen and C. T. Chan},
journal= {arXiv preprint arXiv:1106.3002},
year = {2011}
}
Comments
13 pages, 6 figures