DocumentCode :
1990012
Title :
New triazine containing polymers for use in integrated optics
Author :
Dreyer, Christian ; Schneider, Jiirgen ; Bauer, Monika ; Kei, Norbert ; Yao, Huihai ; Zawadzki, Crispin
Author_Institution :
Dept. Polymeric Mater. & Composites, Fraunhofer Inst. for Reliability & Microintegration, Teltow-Seehof, Germany
fYear :
2002
fDate :
2002
Firstpage :
131
Lastpage :
136
Abstract :
The amount of data transferred via the internet redoubles every eight month, this results in a strong increasing demand on bandwidth. Today glass fiber is the medium of choice for long range transmission, but for an optical network a lot of devices, such as multiplexer, splitter, attenuators etc. are needed. Typically such waveguide-based devices are produced by using silica, but in contrast to the inorganic waveguides polymers provide a lot of advantages, such as lower production costs, temperature insensitive devices and switches with low switching power. Developed in the late sixties as base materials for printed circuit boards polycyanurate ester resins are a relatively new class of polymers. They have a high thermostability and amazing mechanical properties. Our past work was focussed on highly fluorinated polycyanurate systems for use as waveguide materials in integrated optics. Low optical losses of less than 0.3 dB/cm @ 1550 nm were obtained and working optical prototypes were developed also. Our actual work is focused on related polymeric systems, which should remedy some disadvantages of the neat polycyanurates. Because of its outstanding thermomechanical properties and its excellent polishing ability, we extended the use of triazine-containing polymers as substrate materials for optical waveguiding devices. This paper is focused on the development of alternate triazine-containing polymeric substrates, the production of athermal integrated optical devices and the adjustment of the substrate-properties. For these specific devices polyacrylate systems are used as waveguiding materials.
Keywords :
demultiplexing equipment; integrated optics; optical communication equipment; optical losses; optical polymers; optical switches; optical waveguides; refractive index; arrayed waveguide grating; athermal devices; crosslinked network; dense wavelength demultiplexer; integrated optics; low optical loss; low power switches; polishing ability; polyacrylate systems; polycyanurate ester resins; router; substrate materials; temperature insensitive devices; temperature shift; thermomechanical properties; triazine containing polymers; waveguide-based devices; wavelength tunability; Bandwidth; Integrated optics; Internet; Optical attenuators; Optical devices; Optical fiber networks; Optical materials; Optical polymers; Optical waveguides; Production;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Polymers and Adhesives in Microelectronics and Photonics, 2002. POLYTRONIC 2002. 2nd International IEEE Conference on
Print_ISBN :
0-7803-7567-X
Type :
conf
DOI :
10.1109/POLYTR.2002.1020196
Filename :
1020196
Link To Document :
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