TY - JOUR
T1 - Fabrication process and optical properties of perdeuterated graded-index polymer optical fiber
AU - Kondo, Atsushi
AU - Ishigure, Takaaki
AU - Koike, Yasuhiro
PY - 2005/8
Y1 - 2005/8
N2 - We proposed a graded-index polymer optical fiber (GI-POF) enabling greater-than-gigabit data transmission in a short reach network by applying a two-step interfacial-gel polymerization process to a perdeuterated polymer material. Using this process, it is possible to fabricate a nearly optimum refractive-index profile with good reproducibility. In this paper, the preparation of a perdeuterated polymethyl methacrylate (PMMA-d8)-based GI-POF utilizing a PMMA cladding is described. This means that the low-loss PMMA-d8 material is used only for the core. Because the cladding transmits only a small fraction of the optical power, a low-loss material is not necessarily required for the cladding. It was verified that the low attenuation of the PMMA-d8 was maintained even if the cladding was composed of hydrogenated PMMA. As a result, a gigabit data transmission over 300 m was achieved by the PMMA-d8-core and PMMA-cladding GI-POF, which was impossible by the conventional PMMA-based GI-POF.
AB - We proposed a graded-index polymer optical fiber (GI-POF) enabling greater-than-gigabit data transmission in a short reach network by applying a two-step interfacial-gel polymerization process to a perdeuterated polymer material. Using this process, it is possible to fabricate a nearly optimum refractive-index profile with good reproducibility. In this paper, the preparation of a perdeuterated polymethyl methacrylate (PMMA-d8)-based GI-POF utilizing a PMMA cladding is described. This means that the low-loss PMMA-d8 material is used only for the core. Because the cladding transmits only a small fraction of the optical power, a low-loss material is not necessarily required for the cladding. It was verified that the low attenuation of the PMMA-d8 was maintained even if the cladding was composed of hydrogenated PMMA. As a result, a gigabit data transmission over 300 m was achieved by the PMMA-d8-core and PMMA-cladding GI-POF, which was impossible by the conventional PMMA-based GI-POF.
KW - Low attenuation
KW - Perdeuterated methyl metacrylate
KW - Plastic optical fiber
KW - Two-step interfacial-gel polymerization process
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U2 - 10.1109/JLT.2005.852021
DO - 10.1109/JLT.2005.852021
M3 - Article
AN - SCOPUS:24744433919
SN - 0733-8724
VL - 23
SP - 2443
EP - 2448
JO - Journal of Lightwave Technology
JF - Journal of Lightwave Technology
IS - 8
ER -