Anapole Modes in Hollow Nanocuboid Dielectric Metasurfaces for Refractometric Sensing

This work proposes the use of the refractive index sensitivity of non-radiating anapole modes of high-refractive-index nanoparticles arranged in planar metasurfaces as a novel sensing principle. The spectral position of anapole modes excited in hollow silicon nanocuboids is first investigated as a f...

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Veröffentlicht in:Nanomaterials (Basel, Switzerland) Switzerland), 2018-12, Vol.9 (1), p.30
Hauptverfasser: Algorri, José Francisco, Zografopoulos, Dimitrios C, Ferraro, Antonio, García-Cámara, Braulio, Vergaz, Ricardo, Beccherelli, Romeo, Sánchez-Pena, José Manuel
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Sprache:eng
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Zusammenfassung:This work proposes the use of the refractive index sensitivity of non-radiating anapole modes of high-refractive-index nanoparticles arranged in planar metasurfaces as a novel sensing principle. The spectral position of anapole modes excited in hollow silicon nanocuboids is first investigated as a function of the nanocuboid geometry. Then, nanostructured metasurfaces of periodic arrays of nanocuboids on a glass substrate are designed. The metasurface parameters are properly selected such that a resonance with ultrahigh -factor, above one million, is excited at the target infrared wavelength of 1.55 µm. The anapole-induced resonant wavelength depends on the refractive index of the analyte superstratum, exhibiting a sensitivity of up to 180 nm/RIU. Such values, combined with the ultrahigh -factor, allow for refractometric sensing with very low detection limits in a broad range of refractive indices. Besides the sensing applications, the proposed device can also open new venues in other research fields, such as non-linear optics, optical switches, and optical communications.
ISSN:2079-4991
2079-4991
DOI:10.3390/nano9010030