Ultrahigh-Q metallic nanocavity resonances with externally-amplified intracavity feedback

Citations

WEB OF SCIENCE

0
Citations

SCOPUS

3

초록

We propose a mechanism of ultrahigh-Q metallic nanocavity resonances that involves an efficient loss-compensation scheme favorable for room-temperature operation. We theoretically show that surface plasmon-polaritons excited on the entrance and exit interfaces of a metallic nanocavity array efficiently transfer external optical gain to the cavity modes by inducing resonantly-amplified intracavity feedback. Surprisingly, the modal gain in the nanocavity with the externally amplified feedback is inversely proportional to the cavity length as opposed to conventional optical cavity amplifiers requiring longer cavities for higher optical gain. Utilizing this effect, we numerically demonstrate room-temperature nanocavity resonance Q-factor exceeding 10(4) in a 25-nm-wide silver nanoslit array. The proposed mechanism provides a highly efficient plasmonic amplification process particularly for subwavelength plasmonic cavities which are essential components in active nanoplasmonic devices.

키워드

SURFACE-PLASMON-POLARITONSREFRACTIVE-INDEXCAVITYMETAMATERIALSFLUORESCENCETRANSMISSIONMICROCAVITYGRATINGSCHIP
제목
Ultrahigh-Q metallic nanocavity resonances with externally-amplified intracavity feedback
저자
Yoon, Jae WoongSong, Seok HoMagnusson, Robert
DOI
10.1038/srep07124
발행일
2014-11
유형
Article
저널명
Scientific Reports
4
페이지
1 ~ 5

파일 다운로드