The design of some 1D waveguiding photonic bandgap (PBG) devices and Fiber Bragg Gratings (FBG) for microstrain based sensing applications has been carried out by a model based on the Bloch-Floquet theorem. A lwo loss, very narrow passband GaAs PBG filter for the operating wavelength λ = 1.55 μm, having an air bridge configuration, was designed and simulated. Moreover, a resonant Si on glass PBG device has been designed to obtain the resonance condition at λ= 1.55 μm. Finally, a FBG-based microstrain sensor design has been carried out, having an array of 32 FBG. A complete analysis of the propagation characteristics, electromagnetic field harmonics and total field distribution, transmission and reflection coefficients, guided and raidated power, and total losses, enabled the optimization of the design in a very short CPU time.

Optimal Design of Waveguiding Periodic Structures / Diana, R.; Giorgio, Agostino; Perri, Anna Gina; Armenise, M. N.. - 4944:(2002), pp. 382-392. (Intervento presentato al convegno Conference on Integrated Optical Devices tenutosi a Brugge, Belgium nel 30 October-1 November 2002) [10.1117/12.472483].

Optimal Design of Waveguiding Periodic Structures

GIORGIO, Agostino;PERRI, Anna Gina;
2002-01-01

Abstract

The design of some 1D waveguiding photonic bandgap (PBG) devices and Fiber Bragg Gratings (FBG) for microstrain based sensing applications has been carried out by a model based on the Bloch-Floquet theorem. A lwo loss, very narrow passband GaAs PBG filter for the operating wavelength λ = 1.55 μm, having an air bridge configuration, was designed and simulated. Moreover, a resonant Si on glass PBG device has been designed to obtain the resonance condition at λ= 1.55 μm. Finally, a FBG-based microstrain sensor design has been carried out, having an array of 32 FBG. A complete analysis of the propagation characteristics, electromagnetic field harmonics and total field distribution, transmission and reflection coefficients, guided and raidated power, and total losses, enabled the optimization of the design in a very short CPU time.
2002
Conference on Integrated Optical Devices
0-8194-4739-0
Optimal Design of Waveguiding Periodic Structures / Diana, R.; Giorgio, Agostino; Perri, Anna Gina; Armenise, M. N.. - 4944:(2002), pp. 382-392. (Intervento presentato al convegno Conference on Integrated Optical Devices tenutosi a Brugge, Belgium nel 30 October-1 November 2002) [10.1117/12.472483].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11589/22917
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