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Communication Dans Un Congrès Année : 2019

Tailoring electric and magnetic dipole emissions by high-refractive index dielectric nanostructures

Peter Wiecha
Bruno Masenelli

Résumé

We propose a simple experimental technique to separately map the emission from electric and magnetic dipole transitions close to single dielectric nanostructures, using a few-nanometer thin film of rare-earth-ion-doped clusters. Rare-earth ions provide electric and magnetic dipole transitions of similar magnitude. By recording the photoluminescence from the deposited layer excited by a focused laser beam, we are able to simultaneously map the electric and magnetic emission enhancement on individual nanostructures. In spite of being a diffraction-limited far-field method with a spatial resolution of a few hundred nanometers, our approach appeals by its simplicity and high signal-to-noise ratio. We demonstrate our technique at the example of single silicon nanorods and dimers, in which we find a significant separation of electric and magnetic near-field contributions. Our method paves the way towards the efficient and rapid characterization of the electric and magnetic optical response of complex photonic nanostructures.
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Dates et versions

hal-02303763 , version 1 (02-10-2019)

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  • HAL Id : hal-02303763 , version 1

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Peter Wiecha, Clément Majorel, Christian Girard, Arnaud Arbouet, Bruno Masenelli, et al.. Tailoring electric and magnetic dipole emissions by high-refractive index dielectric nanostructures. 10th International Conference on Metamaterials, Photonic Crystals and Plasmonics (META 2019), Jul 2019, Lisbonne, Portugal. ⟨hal-02303763⟩
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