Title :
High-Bandwidth Graded-Index Plastic Optical Fiber by the Dopant Diffusion Coextrusion Process
Author :
Asai, Makoto ; Hirose, Ryoma ; Kondo, Atsushi ; Koike, Yasuhiro
Author_Institution :
Keio Univ., Yokohama
Abstract :
Today, the number of services, which includes large information contents like high-definition movies, is rapidly increasing. The graded-index plastic optical fiber (GI-POF) has been proposed as a solution. The conventional fabrication method of GI-POF, however, is unsuitable for mass production. Therefore, we propose the dopant diffusion coextrusion process for fabricating high-bandwidth GI-POF. It has been generally thought that formation mechanism of refractive-index distribution in optical polymer materials by this process would be a Fick´s diffusion with constant diffusion coefficient and, therefore, has a tailing part at the core-cladding boundary. Contrary to predictions, we succeed in fabricating GI-POF with an almost optimum-index distribution. It is made evident by experiments and simulation that the formation mechanism of GI-POF by this process is a Fick´s diffusion with diffusion coefficient dependent on dopant concentration. These results indicate high possibility of fabrication of high-bandwidth fibers of a polymethyl methacrylate-diphenyl sulfide system by the dopant diffusion coextrusion process.
Keywords :
extrusion; gradient index optics; optical fibre fabrication; optical polymers; plastics; refractive index; Fick diffusion; Fick´s diffusion; constant diffusion coefficient; core cladding boundary; dopant diffusion coextrusion process; formation mechanism; high bandwidth graded index plastic optical fiber; optical polymer materials; optimum index distribution; polymethyl methacrylate diphenyl sulfide system; refractive index distribution; Copper; Costs; Joining processes; Mass production; Motion pictures; Optical device fabrication; Optical fiber cables; Optical fibers; Plastics; Polymers; Boltzmann–Matano method; co-extrusion process; diffusion; dopant; graded index plastic optical fiber;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2007.904931