Wavelength division multiplexer and method of manufacturing

G - Physics – 02 – B

Patent

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G02B 6/26 (2006.01) G02B 6/34 (2006.01)

Patent

CA 2385022

An athermalized optical device includes an optical phase-array comprising a plurality of curved waveguide cores of different lengths supported on a planar waveguide, wherein each of the waveguide cores of the array includes a first silica segment (12A), a second silica segment (12B) and a central polymer segment connecting the first silica segment with the second silica segment (12B) to form a continuous waveguide core. The device is prepared by forming a plurality of adjacent curved silica waveguide cores on a planar substrate (14), overcladding the silica waveguide cores with a silica overclad, etching at least one groove into a central portion of the optical phased-array (24) through the overclad and silica waveguiding cores, forming a plurality of waveguide core segments connecting a first silica waveguide core segment with a corresponding second silica waveguide core segment (12C) to form a continous waveguide core, and overcladding the polymer waveguide core segment to define a composite optical phase-array (24).

L'invention concerne un dispositif optique insensible aux variations de températures, comprenant un réseau à commande de phases optiques lequel comprend une multitude d'âmes de guides d'ondes incurvées présentant des longueurs différentes, qui sont supportées sur un guide d'onde plan. Chacune des âmes de guide d'onde faisant partie du réseau comprend un premier segment (12A) de silice, un second segment (12B) de silice et un segment polymère central reliant le premier segment de silice et le second segment (12B) de silice de manière à former une âme de guide d'onde continue. Le procédé de fabrication dudit dispositif consiste à former une multitude d'âmes de guide d'onde de silice incurvées adjacentes sur un substrat (14) plan; à gainer ces âmes à l'aide d'une gaine de silice; à graver au moins un sillon dans la portion centrale du réseau (24) à commande de phases optiques, lequel sillon traverse la gaine et les âmes en silice des guides d'ondes; à former une multitude de segments d'âmes de guide d'onde reliant un premier segment d'âme en silice et un second segment (12C) correspondant, de manière à former une âme de guide d'onde continue; puis à gainer le segment d'âme polymère afin de définir un réseau (24) à commande de phases optiques composite.

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