Title :
Laser-fabricated low-loss single-mode raised-rib waveguiding devices in polymers
Author :
Eldada, Louay ; Xu, Chengzeng Chuck ; Stengel, Kelly M T ; Shacklette, Lawrence W. ; Yardley, James T.
Author_Institution :
Eng. Mater. Sector, Allied-Signal Inc., Morristown, NJ, USA
fDate :
7/1/1996 12:00:00 AM
Abstract :
Organic polymeric materials offer a versatile medium for the creation of low-cost large-area optical guided-wave structures. In this work, we report on the use of a novel maskless laser-based microfabrication technique for the photochemical delineation of raised-rib single-mode waveguiding devices in polymers. This technology relies on accurate control of small refractive index differences (which is achieved by using intermiscible acrylate monomers), use of high-contrast photochemical response, as well as precise control of laser writing parameters. The devices reported here have cross-sectional dimensions and numerical apertures that match single-mode glass optical fibers. They exhibit very low losses of 0.03 dB/cm at 840 nm and exceptional thermal stability. We present the operational characteristics of bends, Y-branches, and directional couplers fabricated using this technology and compare these characteristics with those predicted from theory
Keywords :
bending; laser beam applications; optical directional couplers; optical fabrication; optical losses; optical polymers; optical waveguides; refractive index; rib waveguides; thermal stability; 840 nm; Y-branches; bends; cross-sectional dimensions; high-contrast photochemical response; intermiscible acrylate monomers; laser writing parameters; laser-fabricated low-loss single-mode raised-rib waveguiding devices; low-cost large-area optical guided-wave structures; maskless laser-based microfabrication technique; operational characteristics; optical directional couplers; optical polymers; organic polymeric materials; photochemical delineation; raised-rib single-mode waveguiding devices; single-mode glass optical fiber matching; small refractive index differences; thermal stability; very low losses; Fiber lasers; Optical control; Optical materials; Optical polymers; Optical refraction; Optical variables control; Organic materials; Photochemistry; Refractive index; Writing;
Journal_Title :
Lightwave Technology, Journal of