Memorias de investigación
Artículos en revistas:
On the Large Near-Field Enhancement on Nanocolumnar Gold Substrates
Año:2019

Áreas de investigación
  • Fisica sm -- estructura de materiales

Datos
Descripción
One of the most important and distinctive features of plasmonic nanostructures is their ability to confine large electromagnetic fields on nanometric volumes; i.e., the so-called hot spots. The generation, control and characterization of the hot spots are fundamental for several applications, like surface-enhanced spectroscopies. In this work, we characterize the near-field distribution and enhancement of nanostructured gold thin films fabricated by glancing angle deposition magnetron sputtering. These films are composed of columnar nanostructures with high roughness and high density of inter-columnar gaps, where the electromagnetic radiation can be confined, generating hot spots. As expected, the hot spots are localized in the gaps between adjacent nanocolumns and we use scattering-type scanning near-field optical microscopy to image their distribution over the surface of the samples. The experimental results are compared with finite-difference time-domain simulations, finding an excellent agreement between them. The spectral dependence of the field-enhancement is also studied with the simulations, together with surface-enhanced Raman spectroscopy at different excitation wavelengths in the visible-NIR range, proving a broad-band response of the substrates. These findings may result in interesting applications in the field of surface-enhanced optical spectroscopies or sensing.
Internacional
Si
JCR del ISI
Si
Título de la revista
Scientific Reports
ISSN
2045-2322
Factor de impacto JCR
4,122
Información de impacto
Datos JCR del año 2017
Volumen
9
DOI
10.1038/s41598-019-50392-w
Número de revista
Desde la página
0
Hasta la página
10
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Participantes
  • Autor: Pablo Díaz Núñez UPM
  • Autor: JM Garcia-Martin Instituto de Micro y Nanotecnología, IMN-CNM, CSIC (CEI UAM+CSIC
  • Autor: MU Gonzalez Instituto de Micro y Nanotecnología, IMN-CNM, CSIC (CEI UAM+CSIC
  • Autor: Raquel Gonzalez Arrabal UPM
  • Autor: Antonio Juan Rivera de Mena UPM
  • Autor: P Alonso-Gonzalez CSIC - Centro de Investigacion en Nanomateriales y Nanotecnologia (CINN) University of Oviedo
  • Autor: J Martin-Sanchez CSIC - Centro de Investigacion en Nanomateriales y Nanotecnologia (CINN) University of Oviedo
  • Autor: J Taboada-Gutierrez CSIC - Centro de Investigacion en Nanomateriales y Nanotecnologia (CINN) University of Oviedo
  • Autor: G Gonzalez-Rubio Departamento de Química Física, Universidad Complutense de Madrid, Bionanoplasmonics Laboratory, CIC biomaGUNE
  • Autor: A Guerrero-Martinez Departamento de Química Física, Universidad Complutense de Madrid
  • Autor: L Banares Departamento de Química Física, Universidad Complutense de Madrid, Centro de Láseres Ultrarrápidos, Universidad Complutense de Madrid,
  • Autor: Ovidio Yordanis Peña Rodriguez UPM

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  • Creador: Grupo de Investigación: Fusión Nuclear Inercial y Tecnología de fusión
  • Departamento: Ingeniería Energética
  • Centro o Instituto I+D+i: Instituto de Fusión Nuclear "Guillermo Velarde"