Model for estimating the properties of mechanically induced long-period fiber grating based on polarization and applied pressure
Author:
Affiliation:
1. Department of Electrical and Information Systems, Graduate school of engineering, Osaka Prefecture University
Publisher
Institute of Electronics, Information and Communications Engineers (IEICE)
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/comex/6/9/6_2017XBL0090/_pdf
Reference9 articles.
1. [1] S. Savin, M. J. F. Digonnet, G. S. Kino, and H. J. Shaw, “Tunable mechanically induced long-period fiber gratings,” Opt. Lett., vol. 25, no. 10, pp. 710–712, 2000. DOI:10.1364/OL.25.000710
2. [2] S. W. James and R. P. Tatam, “Optical fibre long-period fibre grating sensors: Characteristics and application,” Meas. Sci. Technol., vol. 14, no. 5, pp. R49–R61, 2003. DOI:10.1088/0957-0233/14/5/201
3. [3] Y. Liu, L. Zhang, and I. Bennion, “Fiber optic load sensors with high transverse strain sensitivity based on long-period gratings in B/Ge co-doped fiber,” Electron. Lett., vol. 35, no. 8, pp. 661–663, 1999. DOI:10.1049/el:19990457
4. [4] Y. Tsutsumi, M. Ohashi, and Y. Miyoshi, “Temperature sensing using an optical time domain reflectometer and mechanical long-period fiber gratings fabricated from a heat-shrinkable tube,” IEICE Commun. Express, vol. 6, no. 2, pp. 103–108, 2017. DOI:10.1587/comex.2016XBL0189
5. [5] Y. Tsutsumi, M. Ohashi, Y. Miyoshi, and H. Kubota, “Optical gas pressure sensor with long period fiber grating fabricated with heat-shrinkable tube,” Technical Digest of Asia Communications and Photonics Conference 2016, AF3C.5, 2016. DOI:10.1364/ACPC.2016.AF3C.5
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