Measurement and Modeling of a Complete Optical Absorption and Scattering by Coherent Surface Plasmon-Polariton Excitation Using a Silver Thin-Film Grating

Citations

WEB OF SCIENCE

72
Citations

SCOPUS

76

초록

We demonstrate the plasmonic analogue of a coherent photonic effect known as coherent perfect absorption. A periodically nanopatterned metal film perfectly absorbs multiple coherent light beams coupling to a single surface plasmon mode. The perfect absorbing state can be switched to a nearly perfect scattering state by tuning the phase difference between the incident beams. We theoretically explain the plasmonic coherent perfect absorption by considering time-reversal symmetry of surface plasmon amplification by stimulated emission of radiation. We experimentally demonstrate coherent control of the plasmonic absorption in good agreement with a coupled-mode theory of dissipative resonances. Associated potential applications include absorption-based plasmonic switches, modulators, and light-electricity transducers.

키워드

Absorbing stateCoherent controlCoherent light beamsCoupled-mode theoryIncident beamsMetal filmPhase differencePhotonic effectsPlasmonicPotential applicationsScattering stateSurface plasmon modesSurface plasmon polaritonsSurface plasmonsTime reversal symmetries
제목
Measurement and Modeling of a Complete Optical Absorption and Scattering by Coherent Surface Plasmon-Polariton Excitation Using a Silver Thin-Film Grating
저자
Yoon, Jae WoongKoh, Gang MinSong, Seok HoMagnusson, Robert
DOI
10.1103/PhysRevLett.109.257402
발행일
2012-12
유형
Article
저널명
Physical Review Letters
109
25
페이지
1 ~ 6