TY - JOUR
T1 - Experimental investigation of the factors influencing temperature dependence of radiation-induced attenuation in optical fiber
AU - Jin, Jing
AU - Xu, Raomei
AU - Liu, Jixun
AU - Song, Ningfang
PY - 2014/3
Y1 - 2014/3
N2 - The effects of transmission wavelength, total dose and light source power on temperature dependence of radiation-induced attenuation (RIA) in Ge-P co-doped fibers were investigated. Three fibers irradiated up to total dose of 100 Gy and 10,000 Gy were used as test samples. A test system for temperature dependence of RIA was built up. The influence of transmission wavelength, total dose and light power on temperature sensitivity and linearity of RIA in three irradiated fibers were researched. The test results show that temperature sensitivity and linearity of RIA in optical fibers could be improved by adjusting total dose and selecting transmission wavelength. The light source power does not have obvious influence on temperature sensitivity and linearity. The Ge-P co-doped fiber at 850 nm transmission wavelength with higher total dose is a very promising candidate for fiber-optic temperature sensor.
AB - The effects of transmission wavelength, total dose and light source power on temperature dependence of radiation-induced attenuation (RIA) in Ge-P co-doped fibers were investigated. Three fibers irradiated up to total dose of 100 Gy and 10,000 Gy were used as test samples. A test system for temperature dependence of RIA was built up. The influence of transmission wavelength, total dose and light power on temperature sensitivity and linearity of RIA in three irradiated fibers were researched. The test results show that temperature sensitivity and linearity of RIA in optical fibers could be improved by adjusting total dose and selecting transmission wavelength. The light source power does not have obvious influence on temperature sensitivity and linearity. The Ge-P co-doped fiber at 850 nm transmission wavelength with higher total dose is a very promising candidate for fiber-optic temperature sensor.
KW - Optical fiber
KW - Radiation induced absorption spectrum
KW - Radiation-induced attenuation
KW - Temperature dependence
UR - https://www.scopus.com/pages/publications/84894607059
U2 - 10.1016/j.yofte.2013.12.006
DO - 10.1016/j.yofte.2013.12.006
M3 - 文章
AN - SCOPUS:84894607059
SN - 1068-5200
VL - 20
SP - 110
EP - 115
JO - Optical Fiber Technology
JF - Optical Fiber Technology
IS - 2
ER -