Steady-State Radiation-Induced Effects on the Performances of BOTDA and BOTDR Optical Fiber Sensors
暂无分享,去创建一个
S. Delepine-Lesoille | A. Morana | S. Girard | E. Marin | Y. Ouerdane | A. Boukenter | I. Planes | C. Cangialosi
[1] X. Bao,et al. 32-km distributed temperature sensor based on Brillouin loss in an optical fiber. , 1993, Optics letters.
[2] S. Girard,et al. Vulnerability of OFDR-based distributed sensors to high γ-ray doses. , 2015, Optics express.
[3] Youcef Ouerdane,et al. Steady γ-Ray Effects on the Performance of PPP-BOTDA and TW-COTDR Fiber Sensing , 2017, Sensors.
[4] C. Marcandella,et al. Steady state γ-ray radiation effects on Brillouin fiber sensors , 2015, International Conference on Optical Fibre Sensors.
[5] Luc Thévenaz,et al. The effects of gamma-radiation on the properties of Brillouin scattering in standard Ge-doped optical fibres , 2006 .
[6] Chiara Cangialosi,et al. Performances of Raman and Brillouin fiber-based sensing of temperature and strain in harsh environments , 2016 .
[7] S. Girard,et al. Radiation Effects on Silica-Based Optical Fibers: Recent Advances and Future Challenges , 2013, IEEE Transactions on Nuclear Science.
[8] M Farhadiroushan,et al. Temperature and strain dependence of the power level and frequency of spontaneous Brillouin scattering in optical fibers. , 1997, Optics letters.
[9] P Paillet,et al. Radiation effects on optical frequency domain reflectometry fiber-based sensor. , 2015, Optics letters.
[10] V. Lecoeuche,et al. Radiation Hardened Architecture of a Single-Ended Raman-Based Distributed Temperature Sensor , 2017, IEEE Transactions on Nuclear Science.