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Doubly resonant χ(2) nonlinear photonic crystal cavity based on a bound state in the continuum

Academic Article
Publication Date:
2019
abstract:
Photonic nanostructures simultaneously maximizing spectral and spatial overlap between fundamental and second-harmonic confined modes are highly desirable for enhancing second-order nonlinear effects in nonlinear media. These conditions have thus far remained challenging to satisfy in photonic crystal cavities because of the difficulty in designing a band gap at the second-harmonic frequency. Here, we solve this issue by using instead a bound state in the continuum at that frequency, and we design a doubly resonant photonic crystal slab cavity with strongly improved figures of merit for nonlinear frequency conversion when compared to previous photonic crystal designs. Furthermore, we show that the far-field emission at both frequencies is highly collimated around normal incidence, which allows for simultaneously efficient pump excitation and collection of the generated nonlinear signal. Our results could lead to unprecedented conversion efficiencies in both parametric down-conversion and second-harmonic generation in an extremely compact architecture.
Iris type:
1.1 Articolo in rivista
Keywords:
Second harmonic generation, photonic crystal cavities, bound state in the continuum
List of contributors:
Minkov, M.; Gerace, D.; Fan, S.
Authors of the University:
GERACE DARIO
Handle:
https://iris.unipv.it/handle/11571/1332749
Published in:
OPTICA
Journal
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URL

https://www.osapublishing.org/optica/abstract.cfm?uri=optica-6-8-1039
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