Electro-optically switchable photonic components based on zenithal bistable liquid-crystal gratings are designed and theoretically investigated. By properly selecting the material and geometrical parameters, we demonstrate that such gratings can operate as switchable beam splitters, beam steerers, quarterwave plates, and narrowband guided-mode resonant filters. The switching dynamics of the proposed components are also investigated by employing a tensorial formulation for the liquidcrystal orientation problem, which is coupled with the lightwave propagation studies in a multiphysics environment based on the finite-element method.

Switchable photonic components based on zenithal-bistable nematic liquid crystal gratings

Zografopoulos Dimitrios C;Beccherelli Romeo
2017

Abstract

Electro-optically switchable photonic components based on zenithal bistable liquid-crystal gratings are designed and theoretically investigated. By properly selecting the material and geometrical parameters, we demonstrate that such gratings can operate as switchable beam splitters, beam steerers, quarterwave plates, and narrowband guided-mode resonant filters. The switching dynamics of the proposed components are also investigated by employing a tensorial formulation for the liquidcrystal orientation problem, which is coupled with the lightwave propagation studies in a multiphysics environment based on the finite-element method.
2017
Inglese
30th Annual Conference of the IEEE Photonics Society, IPC 2017
2017-January
597
598
9781509065783
http://www.scopus.com/record/display.url?eid=2-s2.0-85043463143&origin=inward
01-05/10/2017
Orlando, Florida, USA
Beam splitters
Nematic liquid crystals
Optical filters
Polarization-control devices
Zenithal bistable device
3
none
Zografopoulos Dimitrios, C; Kriezis Emmanouil, E; Beccherelli, Romeo
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/386073
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