Enhanced two-photon photoluminescence assisted by multi-resonant characteristics of a gold nanocylinder

Multi-resonant plasmonic simple geometries like nanocylinders and nanorods are highly interesting for two-photon photoluminescence and second harmonic generation applications, due to their easy fabrication and reproducibility in comparison with complex multi-resonant systems like dimers or nanoclust...

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Main Authors: Movsesyan Artur, Lamri Gwénaëlle, Kostcheev Sergei, Horneber Anke, Bräuer Annika, Meixner Alfred J., Fleischer Monika, Zhang Dai, Baudrion Anne-Laure, Adam Pierre-Michel
Format: Article
Language:English
Published: De Gruyter 2020-07-01
Series:Nanophotonics
Subjects:
Online Access:https://doi.org/10.1515/nanoph-2020-0213
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spelling doaj-95db330729274806b43bfd522e66cd292021-09-06T19:20:36ZengDe GruyterNanophotonics2192-86062192-86142020-07-019124009401910.1515/nanoph-2020-0213Enhanced two-photon photoluminescence assisted by multi-resonant characteristics of a gold nanocylinderMovsesyan Artur0Lamri Gwénaëlle1Kostcheev Sergei2Horneber AnkeBräuer AnnikaMeixner Alfred J.Fleischer MonikaZhang DaiBaudrion Anne-Laure3Adam Pierre-Michel4Laboratory Light, Nanomaterials & Nanotechnologies – L2n, University of Technology of Troyes & CNRS ERL 7004, 12 rue Marie Curie, 10000, Troyes, FranceLaboratory Light, Nanomaterials & Nanotechnologies – L2n, University of Technology of Troyes & CNRS ERL 7004, 12 rue Marie Curie, 10000, Troyes, FranceLaboratory Light, Nanomaterials & Nanotechnologies – L2n, University of Technology of Troyes & CNRS ERL 7004, 12 rue Marie Curie, 10000, Troyes, FranceLaboratory Light, Nanomaterials & Nanotechnologies – L2n, University of Technology of Troyes & CNRS ERL 7004, 12 rue Marie Curie, 10000, Troyes, FranceLaboratory Light, Nanomaterials & Nanotechnologies – L2n, University of Technology of Troyes & CNRS ERL 7004, 12 rue Marie Curie, 10000, Troyes, FranceMulti-resonant plasmonic simple geometries like nanocylinders and nanorods are highly interesting for two-photon photoluminescence and second harmonic generation applications, due to their easy fabrication and reproducibility in comparison with complex multi-resonant systems like dimers or nanoclusters. We demonstrate experimentally that by using a simple gold nanocylinder we can achieve a double resonantly enhanced two-photon photoluminescence of quantum dots, by matching the excitation wavelength of the quantum dots with a dipolar plasmon mode, while the emission is coupled with a radiative quadrupolar mode. We establish a method to separate experimentally the enhancement factor at the excitation and at the emission wavelengths for this double resonant system. The sensitivity of the spectral positions of the dipolar and quadrupolar plasmon resonances to the ellipticity of the nanocylinders and its impact on the two-photon photoluminescence enhancement are discussed.https://doi.org/10.1515/nanoph-2020-0213lsprmetallic nanostructuresphotoluminescencetppl
collection DOAJ
language English
format Article
sources DOAJ
author Movsesyan Artur
Lamri Gwénaëlle
Kostcheev Sergei
Horneber Anke
Bräuer Annika
Meixner Alfred J.
Fleischer Monika
Zhang Dai
Baudrion Anne-Laure
Adam Pierre-Michel
spellingShingle Movsesyan Artur
Lamri Gwénaëlle
Kostcheev Sergei
Horneber Anke
Bräuer Annika
Meixner Alfred J.
Fleischer Monika
Zhang Dai
Baudrion Anne-Laure
Adam Pierre-Michel
Enhanced two-photon photoluminescence assisted by multi-resonant characteristics of a gold nanocylinder
Nanophotonics
lspr
metallic nanostructures
photoluminescence
tppl
author_facet Movsesyan Artur
Lamri Gwénaëlle
Kostcheev Sergei
Horneber Anke
Bräuer Annika
Meixner Alfred J.
Fleischer Monika
Zhang Dai
Baudrion Anne-Laure
Adam Pierre-Michel
author_sort Movsesyan Artur
title Enhanced two-photon photoluminescence assisted by multi-resonant characteristics of a gold nanocylinder
title_short Enhanced two-photon photoluminescence assisted by multi-resonant characteristics of a gold nanocylinder
title_full Enhanced two-photon photoluminescence assisted by multi-resonant characteristics of a gold nanocylinder
title_fullStr Enhanced two-photon photoluminescence assisted by multi-resonant characteristics of a gold nanocylinder
title_full_unstemmed Enhanced two-photon photoluminescence assisted by multi-resonant characteristics of a gold nanocylinder
title_sort enhanced two-photon photoluminescence assisted by multi-resonant characteristics of a gold nanocylinder
publisher De Gruyter
series Nanophotonics
issn 2192-8606
2192-8614
publishDate 2020-07-01
description Multi-resonant plasmonic simple geometries like nanocylinders and nanorods are highly interesting for two-photon photoluminescence and second harmonic generation applications, due to their easy fabrication and reproducibility in comparison with complex multi-resonant systems like dimers or nanoclusters. We demonstrate experimentally that by using a simple gold nanocylinder we can achieve a double resonantly enhanced two-photon photoluminescence of quantum dots, by matching the excitation wavelength of the quantum dots with a dipolar plasmon mode, while the emission is coupled with a radiative quadrupolar mode. We establish a method to separate experimentally the enhancement factor at the excitation and at the emission wavelengths for this double resonant system. The sensitivity of the spectral positions of the dipolar and quadrupolar plasmon resonances to the ellipticity of the nanocylinders and its impact on the two-photon photoluminescence enhancement are discussed.
topic lspr
metallic nanostructures
photoluminescence
tppl
url https://doi.org/10.1515/nanoph-2020-0213
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