1Jurgen Krauser. Polymer optical fibers.ppt. University of Applied Sciences Leipzig, Germany
2Ishigure T,et al. POF is overcoming silica in bit rate. [C ]. OFC'2001,ThC 721
3Paul Polishuk. Opportunities in the Plastic Optical Fiber Business. From www.igigroup.com
4Ishigure T, Makino K, Sho Tanaka , et al. High-Bandwidth Graded-Index Polymer Optical Fiber Enabling Power Penalty-Free Gigabit Data Transmission. J. of Lightwave Tech., 2003,21(11): 2923~2930
5Ishigure T. Optimum index profile of the perfluorinated polym r-based GI polymer optical fiber and it s dispersion properties [J] J. Lightwave Techno 1., 2000, 18 (2): 178~184
6koike Y,Ishigure T.Status and challenge of GI-POF in data-com. area,Proc 27th ECOC' 01 p72~73
7"FTTx PON guide" second edition. Available on www.exfo.com
8Paul E. Green, Jr. Fiber-to-the-Home White Paper
9Ishigure T, et al. POF is overcoming silica in bit rate.[C]. OFC'2001,ThC 721
5Jurgen Krauser. Polymer optical fibers.ppt. University of Applied Sciences Leipzig, Germany
6Ishigure T,et al. POF is overcoming silica in bit rate. [C ]. OFC'2001,ThC 721
7Paul Polishuk. Opportunities in the Plastic Optical Fiber Business. From www.igigroup.com
8Ishigure T, Makino K, Sho Tanaka , et al. High-Bandwidth Graded-Index Polymer Optical Fiber Enabling Power Penalty-Free Gigabit Data Transmission. J. of Lightwave Tech., 2003,21(11): 2923~2930
9Ishigure T. Optimum index profile of the perfluorinated polym r-based GI polymer optical fiber and it s dispersion properties [J] J. Lightwave Techno 1., 2000, 18 (2): 178~184
10koike Y,Ishigure T.Status and challenge of GI-POF in data-com. area,Proc 27th ECOC' 01 p72~73