Polarization-independent optical spatial differentiation with a doubly-resonant one-dimensional guided-mode grating

We report on the design and experimental characterization of a suspended silicon nitride subwavelength grating possessing a polarization-independent guided-mode resonance at oblique incidence. At this resonant wavelength we observe that the transverse intensity profile of the transmitted beam is con...

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Veröffentlicht in:Optics express 2022-01, Vol.30 (3), p.3962-3972
Hauptverfasser: Darki, Ali Akbar, Peder Madsen, Søren, Dantan, Aurélien
Format: Artikel
Sprache:eng
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Zusammenfassung:We report on the design and experimental characterization of a suspended silicon nitride subwavelength grating possessing a polarization-independent guided-mode resonance at oblique incidence. At this resonant wavelength we observe that the transverse intensity profile of the transmitted beam is consistent with a first-order spatial differentiation of the incident beam profile in the direction of the grating periodicity, regardless of the incident light polarization. These observations are corroborated by full numerical simulations. The simple one-dimensional and symmetric design, combined with the thinness and excellent mechanical properties of these essentially loss-free dieletric films, is attractive for applications in optical processing, sensing and optomechanics.
ISSN:1094-4087
1094-4087
DOI:10.1364/OE.450981