TY - JOUR
T1 - Accurate refractive index profiling in a graded-index plastic optical fiber exceeding gigabit transmission rates
AU - Ishigure, Takaaki
AU - Tanaka, Sho
AU - Kobayashi, Eiji
AU - Koike, Yasuhiro
PY - 2002/8
Y1 - 2002/8
N2 - An optimum index profile offering the highest bit rate communication was formed in a poly methyl methacrylate (PMMA)-based graded-index plastic optical fiber (GI-POF) by modifying the polymerization process. The interfacial-gel polymerization process we have proposed to fabricate the PMMA-based GI-POF is capable of forming a nearly optimum refractive index profile. However, the theoretically calculated bandwidth from the measured index profile was reduced compared with the GI-POF having optimum index profile. In this paper, we report how to obtain a PMMA-based GI-POF having exactly the optimum index profile. The bandwidth of this ideal GI-POF was experimentally measured and the very high bandwidth of 2.88 GHz even for a 150-m fiber length was confirmed. The calculated bandwidth agreed well with the experimentally measured one. These results indicate that very low modal dispersion can be expected in a GI-POF fabricated by the modified interfacial-gel polymerization process.
AB - An optimum index profile offering the highest bit rate communication was formed in a poly methyl methacrylate (PMMA)-based graded-index plastic optical fiber (GI-POF) by modifying the polymerization process. The interfacial-gel polymerization process we have proposed to fabricate the PMMA-based GI-POF is capable of forming a nearly optimum refractive index profile. However, the theoretically calculated bandwidth from the measured index profile was reduced compared with the GI-POF having optimum index profile. In this paper, we report how to obtain a PMMA-based GI-POF having exactly the optimum index profile. The bandwidth of this ideal GI-POF was experimentally measured and the very high bandwidth of 2.88 GHz even for a 150-m fiber length was confirmed. The calculated bandwidth agreed well with the experimentally measured one. These results indicate that very low modal dispersion can be expected in a GI-POF fabricated by the modified interfacial-gel polymerization process.
KW - Differential mode delay
KW - Graded-index plastic optical fiber (GI-POF)
KW - Interfacial-gel polymerization process
KW - Refractive index profile
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U2 - 10.1109/JLT.2002.801133
DO - 10.1109/JLT.2002.801133
M3 - Article
AN - SCOPUS:0036705243
SN - 0733-8724
VL - 20
SP - 1449
EP - 1456
JO - Journal of Lightwave Technology
JF - Journal of Lightwave Technology
IS - 8
ER -