We review polarization splitting and rotating photonic devices based on silicon-on-insulator technology platform, focusing on their performance and design criteria. In addition, we present a theoretical investigation and optimization of some rotator and splitter architectures to be employed for polarization diversity circuits. In this context, fabrication tolerances and their influences on device performance are theoretically estimated by rigorous simulations too.

Design and Optimization of Polarization Splitting and Rotating Devices in Silicon-on-Insulator Technology / Troia, Benedetto; De Leonardis, Francesco; Lanzafame, Mauro; Muciaccia, Tommaso; Grasso, Giuseppe; Giannoccaro, Giovanni; Edoardo Campanella, Carlo; Passaro, Vittorio M. N.. - In: ADVANCES IN OPTOELECTRONICS. - ISSN 1687-563X. - 2014:(2014). [10.1155/2014/490405]

Design and Optimization of Polarization Splitting and Rotating Devices in Silicon-on-Insulator Technology

Francesco De Leonardis;Giovanni Giannoccaro;Vittorio M. N. Passaro
2014-01-01

Abstract

We review polarization splitting and rotating photonic devices based on silicon-on-insulator technology platform, focusing on their performance and design criteria. In addition, we present a theoretical investigation and optimization of some rotator and splitter architectures to be employed for polarization diversity circuits. In this context, fabrication tolerances and their influences on device performance are theoretically estimated by rigorous simulations too.
2014
Design and Optimization of Polarization Splitting and Rotating Devices in Silicon-on-Insulator Technology / Troia, Benedetto; De Leonardis, Francesco; Lanzafame, Mauro; Muciaccia, Tommaso; Grasso, Giuseppe; Giannoccaro, Giovanni; Edoardo Campanella, Carlo; Passaro, Vittorio M. N.. - In: ADVANCES IN OPTOELECTRONICS. - ISSN 1687-563X. - 2014:(2014). [10.1155/2014/490405]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11589/976
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