Simplified optical correlation-domain reflectometry with proximal reflection point using CYTOP

M. Shizuka, H. Lee, N. Hayashi, Y. Mizuno, K. Nakamura

研究成果: Conference contribution

抜粋

We develop a new configuration of simplified optical correlation-domain reflectometry using a proximal reflection point. The experimental setup is basically composed of standard silica fibers and includes neither an optical frequency shifter such as an acousto-optic modulator nor an explicit reference path. The light reflected at the proximal reflection point, which is artificially fabricated near an optical circulator, is used as a reference light. Unlike the conventional silica-based setup, this configuration can perform a distributed reflectivity measurement along the distal half of the sensing fiber. After demonstration of the basic operation, the incident optical power dependence of the reflectivity distribution is investigated, and the existence of the optimal incident power is clarified.

元の言語English
ホスト出版物のタイトルPOF 2016 - 25th International Conference on Plastic Optical Fibres, Conference Proceedings
編集者Patricia Scully, Kate Sugden, David J. Webb
出版者Aston University
ページ187-190
ページ数4
ISBN(電子版)9781854494085
出版物ステータスPublished - 2017
外部発表Yes
イベント25th International Conference on Plastic Optical Fibres, POF 2016 - Birmingham, United Kingdom
継続期間: 2016 9 132016 9 15

出版物シリーズ

名前POF 2016 - 25th International Conference on Plastic Optical Fibres, Conference Proceedings

Conference

Conference25th International Conference on Plastic Optical Fibres, POF 2016
United Kingdom
Birmingham
期間16/9/1316/9/15

ASJC Scopus subject areas

  • Electronic, Optical and Magnetic Materials
  • Polymers and Plastics
  • Materials Chemistry

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  • これを引用

    Shizuka, M., Lee, H., Hayashi, N., Mizuno, Y., & Nakamura, K. (2017). Simplified optical correlation-domain reflectometry with proximal reflection point using CYTOP. : P. Scully, K. Sugden, & D. J. Webb (版), POF 2016 - 25th International Conference on Plastic Optical Fibres, Conference Proceedings (pp. 187-190). (POF 2016 - 25th International Conference on Plastic Optical Fibres, Conference Proceedings). Aston University.