A model for estimating the bending loss of 1.3 µm zero-dispersion single-mode fibers at 1.58 µm from the value at 1.55 µm is investigated experimentally and theoretically. An approximated equation for estimating the bending loss ratio of 1.58 µm to 1.55 µm is proposed, which provides good agreement with the experimental results.
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Kyozo TSUJIKAWA, Masaharu OHASHI, Osamu KAWATA, "Model for Estimating Bending Loss in the 1.5 µm Wavelength Region" in IEICE TRANSACTIONS on Electronics,
vol. E80-C, no. 7, pp. 1067-1069, July 1997, doi: .
Abstract: A model for estimating the bending loss of 1.3 µm zero-dispersion single-mode fibers at 1.58 µm from the value at 1.55 µm is investigated experimentally and theoretically. An approximated equation for estimating the bending loss ratio of 1.58 µm to 1.55 µm is proposed, which provides good agreement with the experimental results.
URL: https://global.ieice.org/en_transactions/electronics/10.1587/e80-c_7_1067/_p
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@ARTICLE{e80-c_7_1067,
author={Kyozo TSUJIKAWA, Masaharu OHASHI, Osamu KAWATA, },
journal={IEICE TRANSACTIONS on Electronics},
title={Model for Estimating Bending Loss in the 1.5 µm Wavelength Region},
year={1997},
volume={E80-C},
number={7},
pages={1067-1069},
abstract={A model for estimating the bending loss of 1.3 µm zero-dispersion single-mode fibers at 1.58 µm from the value at 1.55 µm is investigated experimentally and theoretically. An approximated equation for estimating the bending loss ratio of 1.58 µm to 1.55 µm is proposed, which provides good agreement with the experimental results.},
keywords={},
doi={},
ISSN={},
month={July},}
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TY - JOUR
TI - Model for Estimating Bending Loss in the 1.5 µm Wavelength Region
T2 - IEICE TRANSACTIONS on Electronics
SP - 1067
EP - 1069
AU - Kyozo TSUJIKAWA
AU - Masaharu OHASHI
AU - Osamu KAWATA
PY - 1997
DO -
JO - IEICE TRANSACTIONS on Electronics
SN -
VL - E80-C
IS - 7
JA - IEICE TRANSACTIONS on Electronics
Y1 - July 1997
AB - A model for estimating the bending loss of 1.3 µm zero-dispersion single-mode fibers at 1.58 µm from the value at 1.55 µm is investigated experimentally and theoretically. An approximated equation for estimating the bending loss ratio of 1.58 µm to 1.55 µm is proposed, which provides good agreement with the experimental results.
ER -