Back to results
Bibliographic record · Consultation and access
Artículo

Fabrication and characterization of Au dimer antennas on glass pillars with enhanced plasmonic response

Sadeghi Pedram et al · Wiley · 2017

Open access available
Quick overview. Review the resource’s basic details, then access the content using the main button. This page shows only the information needed to identify, cite, and open the work.

Resource access

Open the content from the main option or choose another available source.

DOAJ DOAJ Articles
Entrar por DOAJ
Main access

Open access available

Recurso identificado como acceso abierto, sin confirmar automáticamente si es texto completo directo.
Open resource

Summary

Descripción general del contenido del recurso.

We report on the fabrication and dark-field spectroscopy characterization of Au dimer nanoantennas placed on top of SiO2 nanopillars. The reported process enables the fabrication of nanopillar dimers with gaps down to 15 nm and heights up to 1 μm. A clear dependence of the plasmonic resonance position on the dimer gap is observed for smaller pillar heights, showing the high uniformity and reproducibility of the process. It is shown how increasing the height of nanopillars significantly affects the recorded elastic scattering spectra from Au nanoantennas. The results are compared to finite-difference time-domain (FDTD) and finite-element method (FEM) simulations. Additionally, measured spectra are accompanied by dark-field microscopy images of the dimers, showing the pronounced change in color. Placing nanoantennas on nanopillars with a height comparable to the in-plane dimer dimensions results in an enhancement of the scattering response, which can be understood through reduced interaction of the near-fields with the substrate. When increasing the pillar height further, scattering by the pillars themselves manifests itself as a strong tail at lower wavelengths. Additionally, strong directional scattering is expected as a result of the interface between the nanoantennas and nanopillars, which is taken into account in simulations. For pillars of height close to the plasmonic resonance wavelength, the scattering spectra become more complex due to additional scattering peaks as a result of larger geometrical nonuniformities.

How to cite

Elegí el formato que necesitás y copiá la referencia al portapapeles.

APA 7

al, S. P. E. (2017). Fabrication and characterization of Au dimer antennas on glass pillars with enhanced plasmonic response. https://doi.org/10.1515/nanoph-2017-0011

MLA

al, Sadeghi Pedram et. "Fabrication and characterization of Au dimer antennas on glass pillars with enhanced plasmonic response." 2017. https://doi.org/10.1515/nanoph-2017-0011.

Chicago

al, Sadeghi Pedram et. 2017. "Fabrication and characterization of Au dimer antennas on glass pillars with enhanced plasmonic response.". https://doi.org/10.1515/nanoph-2017-0011.

Harvard

al, S. P. E. 2017, Fabrication and characterization of Au dimer antennas on glass pillars with enhanced plasmonic response, Wiley, available at: https://doi.org/10.1515/nanoph-2017-0011 [Accessed 8 Aug. 2026].

Share and print

Save the record, copy its permanent link, or print it as a PDF.

Export reference

You can export the record in common formats for use in a reference manager.

Resource details

Bibliographic information to help confirm that this is the correct material.

Title
Fabrication and characterization of Au dimer antennas on glass pillars with enhanced plasmonic response
Author / contributors
Sadeghi Pedram et al
Publisher
Wiley
Publication year
2017
ISSN
2192-8606
ISSN
2192-8606
Language
English

Subjects

Explore related resources through these subjects.

Copied