DocumentCode :
774815
Title :
Fluorescence decay characteristic of Tm-doped YAG crystal fiber for sensor applications, investigated from room temperature to 1400°C
Author :
Shen, Yonghang ; Zhao, Weizhong ; He, Jinglei ; Sun, Tong ; Grattan, Kenneth T V
Author_Institution :
Sch. of Eng. & Math. Sci., City Univ., London, UK
Volume :
3
Issue :
4
fYear :
2003
Firstpage :
507
Lastpage :
512
Abstract :
An yttrium aluminum garnet (YAG) crystal fiber with a thulium-doped end tip was specially grown by means of the laser heated pedestal growth approach and designed to be incorporated in a fiber-optic temperature probe. The fluorescence decay characteristics of the crystal fiber, including the temperature dependence of both the fluorescence lifetime and intensity, were comprehensively investigated. Experimental results indicated that the crystal fiber showed a monotonic relationship between the fluorescence lifetime and temperature with an average lifetime sensitivity of 3 μs °C over a wide temperature range, taking measurement from room temperature to 1200°C. Good stability (up to 1400°C) was observed with high repeatability of the fluorescence lifetime during the annealing process carried out on the fiber over this temperature range. The fiber was found to be an excellent candidate material to be used as a fluorescence decay-based fiber thermometer probe and the results are presented on its performance.
Keywords :
fibre optic sensors; fluorescence; garnets; temperature sensors; yttrium compounds; 20 to 1400 degC; YAG; YAl5O12; fiber-optic temperature probe; fluorescence decay characteristic; fluorescence intensity; fluorescence lifetime; laser heated pedestal growth approach; monotonic relationship; repeatability; sensor applications; Aluminum; Fluorescence; Garnets; Optical fiber sensors; Probes; Sensor phenomena and characterization; Temperature distribution; Temperature measurement; Temperature sensors; Yttrium;
fLanguage :
English
Journal_Title :
Sensors Journal, IEEE
Publisher :
ieee
ISSN :
1530-437X
Type :
jour
DOI :
10.1109/JSEN.2003.815772
Filename :
1226645
Link To Document :
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