DocumentCode :
844058
Title :
Analysis of graded-index polymer optical fiber link performance under fiber bending
Author :
Makino, Kenji ; Nakamura, Takuhiro ; Ishigure, Takaaki ; Koike, Yasuhiro
Volume :
23
Issue :
6
fYear :
2005
fDate :
6/1/2005 12:00:00 AM
Firstpage :
2062
Lastpage :
2072
Abstract :
Bending effects on bandwidth and loss of a graded-index polymer optical fiber (GI POF) were investigated, and those influences on the optical link performance were discussed simultaneously for the first time. The numerical apertures (NAs) of the GI POFs were deliberately varied from 0.154 to 0.292. A bending radius larger than 10 mm induced little mode coupling and little change in the bandwidth of the GI POF. A bending radius smaller than 10 mm caused degradation in the bandwidths of the higher NA GI POFs. On the other hand, in the lower NA GI POFs, even more severe bending could cause little change in their bandwidths. Thus, the lower NA GI POF seemed preferable in suppressing the bandwidth change. However, the higher NA GI POF exhibited the lower bending loss. The preferable NAs for both characteristics were completely opposite. Moreover, the bending loss under underfilled launch (UFL) could be lower than that under overfilled launch (OFL). On the other hand, the bending loss was equivalent to the bandwidth degradation in view of the link power penalty. Therefore, the bandwidth change and loss caused by the bending were the critical factors to optimize the optical link considering the link power budget. The high-NA GI POF with almost ideal refractive-index profile could provide stable high performance in overgigabit communication even under any bending conditions.
Keywords :
bending; gradient index optics; optical fibre communication; optical fibre losses; optical polymers; refractive index; bandwidth degradation; bending effects; bending loss; bending radius; fiber bandwidth; fiber bending; fiber loss; graded-index fiber; link power budget; mode coupling; optical link performance; overfilled launch; overgigabit communication; polymer optical fiber; refractive-index profile; underfilled launch; Apertures; Bandwidth; Degradation; Optical fiber communication; Optical fiber losses; Optical fibers; Optical losses; Optical polymers; Performance analysis; Performance loss; Bending loss; fiber bending; graded-index polymer optical fiber (GI POF); link power penalty; mode coupling; numerical aperture (NA);
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2005.849886
Filename :
1440513
Link To Document :
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