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Polarization Control in Integrated Graphene-Silicon Quantum Photonics Waveguides

Articolo
Data di Pubblicazione:
2022
Citazione:
Polarization Control in Integrated Graphene-Silicon Quantum Photonics Waveguides / Cammarata, S., Fontana, A., Kaplan, A.E., Cornia, S., Dao, T.H., Lacava, C., Demontis, V., Iadanza, S., Vitali, V., De Matteis, F., Pedreschi, E., Magazzu, G., Toncelli, A., Spinella, F., Saponara, S., Gunnella, R., Rossella, F., Salamon, A., Bellani, V.. - In: MATERIALS. - ISSN 1996-1944. - 15:24(2022), pp. 1-11. [10.3390/ma15248739]
Abstract:
We numerically investigated the use of graphene nanoribbons placed on top of silicon-on-insulator (SOI) strip waveguides for light polarization control in silicon photonic-integrated waveguides. We found that two factors mainly affected the polarization control: the graphene chemical potential and the geometrical parameters of the waveguide, such as the waveguide and nanoribbon widths and distance. We show that the graphene chemical potential influences both TE and TM polarizations almost in the same way, while the waveguide width tapering enables both TE-pass and TM-pass polarizing functionalities. Overall, by increasing the oxide spacer thickness between the silicon waveguide and the top graphene layer, the device insertion losses can be reduced, while preserving a high polarization extinction ratio.
Tipologia CRIS:
Articolo su rivista
Keywords:
polarization control; quantum photonics; silicon-graphene heterostructure
Elenco autori:
Cammarata, S.; Fontana, A.; Kaplan, A. E.; Cornia, S.; Dao, T. H.; Lacava, C.; Demontis, V.; Iadanza, S.; Vitali, V.; De Matteis, F.; Pedreschi, E.; Magazzu, G.; Toncelli, A.; Spinella, F.; Saponara, S.; Gunnella, R.; Rossella, F.; Salamon, A.; Bellani, V.
Autori di Ateneo:
ROSSELLA Francesco
Link alla scheda completa:
https://iris.unimore.it/handle/11380/1408889
Link al Full Text:
https://iris.unimore.it//retrieve/handle/11380/1408889/751238/materials-15-08739.pdf
Pubblicato in:
MATERIALS
Journal
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