High capacity, photo-trimmable athermal silicon waveguides

Sandwiching a photosensitive layer of As 2 S 3 between Si core and polymer cladding enables trimming of athermal waveguides. Moreover, athermal operation enables the compensation of thermal effects related to Si nonlinearity with respect to standard waveguides.

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Hauptverfasser: Raghunathan, V., Grillanda, S., Canciamilla, A., Singh, V., Morichetti, F., Michel, J., Agarwal, A. M., Melloni, A., Kimerling, L. C.
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creator Raghunathan, V.
Grillanda, S.
Canciamilla, A.
Singh, V.
Morichetti, F.
Michel, J.
Agarwal, A. M.
Melloni, A.
Kimerling, L. C.
description Sandwiching a photosensitive layer of As 2 S 3 between Si core and polymer cladding enables trimming of athermal waveguides. Moreover, athermal operation enables the compensation of thermal effects related to Si nonlinearity with respect to standard waveguides.
doi_str_mv 10.1109/GROUP4.2012.6324081
format Conference Proceeding
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source IEEE Electronic Library (IEL) Conference Proceedings
subjects Optical filters
Optical ring resonators
Optical waveguides
Polymers
Silicon
Wavelength measurement
title High capacity, photo-trimmable athermal silicon waveguides
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