Hybrid plasmonic photonic structures combine the plasmonic response with the photonic band gap, holding promise for utilization as optical switches and sensors. Here, we demonstrate the active modulation of the optical response in such structures with two different external stimuli, e.g. laser pulses and bacteria.First, we report the fabrication of a miniaturized (5 x 5 mm) indium tin oxide (ITO) grating employing femtosecond laser micromachining, and we show the possibility to modulate the photonic band gap in the visible via ultrafast photoexcitation in the infrared part of the spectrum. Note that the demonstrated time response in the picosecond range of the spectral modulation have an industrial relevance.Moreover, we manufacture one-dimensional photonic crystals consisting of a solution-processed dielectric Bragg stack exposing a top-layer of bio-active silver. We assign the bacterial responsivity of the system to polarization charges at the Ag/bacterium interface, giving rise to an overall blue shift of the photonic band gap.

Scotognella, F., Paterno, G.M., Kriegel, I., Bonfadini, S., Moscardi, L., Criante, L., et al. (2020). Ultrafast photochromism and bacteriochromism in one dimensional hybrid plasmonic photonic structures. 1000 20TH ST, PO BOX 10, BELLINGHAM, WA 98227-0010 USA : SPIE-INT SOC OPTICAL ENGINEERING [10.1117/12.2559455].

Ultrafast photochromism and bacteriochromism in one dimensional hybrid plasmonic photonic structures

Parisini, E;
2020

Abstract

Hybrid plasmonic photonic structures combine the plasmonic response with the photonic band gap, holding promise for utilization as optical switches and sensors. Here, we demonstrate the active modulation of the optical response in such structures with two different external stimuli, e.g. laser pulses and bacteria.First, we report the fabrication of a miniaturized (5 x 5 mm) indium tin oxide (ITO) grating employing femtosecond laser micromachining, and we show the possibility to modulate the photonic band gap in the visible via ultrafast photoexcitation in the infrared part of the spectrum. Note that the demonstrated time response in the picosecond range of the spectral modulation have an industrial relevance.Moreover, we manufacture one-dimensional photonic crystals consisting of a solution-processed dielectric Bragg stack exposing a top-layer of bio-active silver. We assign the bacterial responsivity of the system to polarization charges at the Ag/bacterium interface, giving rise to an overall blue shift of the photonic band gap.
2020
Fiber Lasers and Glass Photonics: Materials through Applications II
53
59
Scotognella, F., Paterno, G.M., Kriegel, I., Bonfadini, S., Moscardi, L., Criante, L., et al. (2020). Ultrafast photochromism and bacteriochromism in one dimensional hybrid plasmonic photonic structures. 1000 20TH ST, PO BOX 10, BELLINGHAM, WA 98227-0010 USA : SPIE-INT SOC OPTICAL ENGINEERING [10.1117/12.2559455].
Scotognella, F; Paterno, GM; Kriegel, I; Bonfadini, S; Moscardi, L; Criante, L; Donini, S; Ariodanti, D; Zani, M; Parisini, E; Lanzani, G
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/916531
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