Title :
Design of a polymer photonic crystal membrane cavity for channel drop filtering in coarse wavelength division multiplexing networks
Author :
Ciminelli, C. ; Dell´Olio, F. ; Conteduca, D. ; Armenise, M.N.
Author_Institution :
Optoelectron. Lab., Politec. di Bari, Bari, Italy
Abstract :
A low-cost polymer integrated optical filter for coarse wavelength division multiplexing systems has been modelled, designed and optimized. The device, which can be manufactured by nanoimprinting lithography, is a Fabry-Perot cavity working at 1551 nm and consisting of a membrane-type slab photonic crystal in which a hole row perpendicular to the propagation direction is removed to form the two reflectors. The dependence of the resonator performance on the key geometrical parameters, i.e. the hole radius and the defect length, has been investigated by the finite element method. A good agreement between the requirements due to the specific application and the device performance has been obtained. The optimized filter, with a footprint of 43.7 μm2, has a Q-factor of 115 and a resonance transmission > 50%.
Keywords :
Q-factor; finite element analysis; integrated optics; membranes; nanolithography; optical design techniques; optical filters; optical polymers; optical resonators; photonic crystals; wavelength division multiplexing; Fabry-Perot cavity; Q-factor; channel drop filtering; coarse wavelength division multiplexing systems; defect length; finite element method; low-cost polymer integrated optical filter; nanoimprinting lithography; optical design; polymer photonic crystal membrane cavity; reflectors; resonance transmission; resonator performance; wavelength 1551 nm; Cavity resonators; Lattices; Photonic crystals; Photonics; Polymers; Q-factor; Resonator filters; integrated optics; optical filters; photonic crystals; resonant photonic devices; wavelength division multiplexing;
Conference_Titel :
Transparent Optical Networks (ICTON), 2013 15th International Conference on
Conference_Location :
Cartagena
DOI :
10.1109/ICTON.2013.6602750