Innovative silicon photonic-based polarization converting device can be realized with the integration of semiconducting InP nanowires (NWs) on the silicon photonic platform. We have recently designed a compact polarization converter and demonstrated its full performances (from quasi-TE modes to quasi-TM modes, and vice versa): see talk 'Semiconductor NW's for polarization control in integrated silicon on insulator waveguides' at this conference and [1].
Study of position uncertainties of nanowire arrays on silicon waveguide in a polarization rotator device / Prete, D., Vitali, V., Lacava, C., Fontana, A., Demontis, V., Salamon, A., Bellani, V., Cristiani, I., Rossella, F.. - (2023), pp. 130-130. (18th IEEE Nanotechnology Materials and Devices Conference, NMDC 2023 ita 2023) [10.1109/NMDC57951.2023.10343772].
Study of position uncertainties of nanowire arrays on silicon waveguide in a polarization rotator device
Prete D.;Lacava C.;Rossella F.
2023
Abstract
Innovative silicon photonic-based polarization converting device can be realized with the integration of semiconducting InP nanowires (NWs) on the silicon photonic platform. We have recently designed a compact polarization converter and demonstrated its full performances (from quasi-TE modes to quasi-TM modes, and vice versa): see talk 'Semiconductor NW's for polarization control in integrated silicon on insulator waveguides' at this conference and [1].Pubblicazioni consigliate

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