Detail publikace

Towards dielectric sensing via Babinet's principle-inspired plasmonic platforms

RILEY, J. HORÁK, M. JOHNSON-RICHARDS, C. HEALY, N. KŘÁPEK, V. PACHECO-PEÑA, V.

Originální název

Towards dielectric sensing via Babinet's principle-inspired plasmonic platforms

Typ

článek ve sborníku ve WoS nebo Scopus

Jazyk

angličtina

Originální abstrakt

Localized surface plasmon (LSP) resonances in plasmonic micro-/nanostructures such as metallic spheres and cylinders, exhibit sensitivity to nearby external changes, such as variations in the refractive index of a dielectric close to the structures. This useful characteristic can be exploited in multiple fields, including medicine, and chemistry. Here, we make use of Babinet's principle of complementarity (a concept developed for low frequencies) to design plasmonic structures at optical frequencies. The structures consist of complementary metal-dielectric cylindrical dimers and apertures on a metal film. Their performance is evaluated both experimentally and numerically demonstrating their ability to be used for sensing applications.

Klíčová slova

SENSITIVITY; MODES

Autoři

RILEY, J.; HORÁK, M.; JOHNSON-RICHARDS, C.; HEALY, N.; KŘÁPEK, V.; PACHECO-PEÑA, V.

Vydáno

19. 5. 2024

ISBN

978-94-6396-810-2

Kniha

2024 4TH URSI ATLANTIC RADIO SCIENCE MEETING, AT-RASC 2024

Strany od

1

Strany do

4

Strany počet

4

URL

BibTex

@inproceedings{BUT189938,
  author="Joseph Arnold {Riley} and Michal {Horák} and Christian {Johnson-Richards} and Noel {Healy} and Vlastimil {Křápek} and Victor {Pacheco-Peña}",
  title="Towards dielectric sensing via Babinet's principle-inspired plasmonic platforms",
  booktitle="
2024 4TH URSI ATLANTIC RADIO SCIENCE MEETING, AT-RASC 2024",
  year="2024",
  pages="1--4",
  doi="10.46620/URSIATRASC24/CPXJ2685",
  isbn="978-94-6396-810-2",
  url="https://ieeexplore-ieee-org.ezproxy.lib.vutbr.cz/search/searchresult.jsp?searchWithin=%22Publication%20Number%22:10584431&searchWithin=%22Document%20Title%22:Towards%20dielectric%20sensing%20via%20Babinet%27s%20principle%20inspired%20plasmonic%20platforms"
}