Mapping Surface-Plasmon Polaritons and Cavity Modes in Extraordinary Optical Transmission

  • Ding, Yiwu
  • Yoon, Jiyoon
  • Javed, M. Haseeb
  • Song, Su Hwa
  • Magnusson, Robert
Citations

WEB OF SCIENCE

33
Citations

SCOPUS

37

초록

Transmission of light through periodic metal films with intensity considerably exceeding that predicted by aperture theory is referred to as extraordinary optical transmission (EOT). The mechanisms responsible for this effect have been investigated intensively during the past decade. Here, we show an elegant method of visualizing the operative physical mechanisms for model resonance systems. By numerically mapping the resonance loci, modal and plasmonic mechanisms emerge clearly with delineated regions of dominance. Thus, the photonic transmission resonances are parametrically correlated with localized electromagnetic fields forming pure surface-plasmon polaritons (SPPs), coexisting plasmonic and cavity-mode (CM) states, and pure CMs. This mapping method renders a consistent picture of the transitions between photonic states in terms of key parameters. It shows how the TM1 CM seamlessly morphs into the odd SPP mode as the film thickness diminishes. Similarly, the TM0 mode converts to the even SPP mode. At the intersection of these mode curves, an EOT-free gap forms due to their interaction. On account of a reflection phase shift of a slit-guided mode, an abrupt transition of the resonance loci in the SPP/CM region is observed.

키워드

Plasmonicssubwavelength structureswaveguidesgratingsnanocavitiesoptical properties of photonic materialsRESONANT TRANSMISSIONMETALLIC GRATINGSLIGHT
제목
Mapping Surface-Plasmon Polaritons and Cavity Modes in Extraordinary Optical Transmission
저자
Ding, YiwuYoon, JiyoonJaved, M. HaseebSong, Su HwaMagnusson, Robert
DOI
10.1109/JPHOT.2011.2138122
발행일
2011-06
유형
Article
저널명
IEEE Photonics Journal
3
3
페이지
365 ~ 374

파일 다운로드