Intrinsic doped fluorescence decay-time based measurements—strain and temperature characteristics for sensor purposes
Author:
Publisher
AIP Publishing
Subject
Instrumentation
Link
http://aip.scitation.org/doi/pdf/10.1063/1.1149241
Reference10 articles.
1. Ultrahigh-sensitivity fiber-optic strain and temperature sensor
2. Thin-film thermocouples and strain-gauge technologies for engine applications
3. Fluorescence decay-time characteristics of erbium-doped optical fiber at elevated temperatures
4. Spectral characteristics and effects of heat treatment on intrinsic Nd-doped fiber thermometer probes
5. Potential for temperature sensor applications of highly neodymium-doped crystals and fiber at up to approximately 1000 °C
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1. Dedicated Temperature Sensing With>tex<$C$>/tex<-Axis Oriented Single-Crystal Ruby>tex<$(rm Cr^3+:rm Al_2rm O_3)$>/tex<Fibers: Temperature and Strain Dependences of R-Line Fluorescence;IEEE Transactions on Instrumentation and Measurement;2004-02
2. Fluorescence intensity ratio technique for optical fiber point temperature sensing;Journal of Applied Physics;2003
3. Dual temperature and strain measurement with the combined fluorescence lifetime and Bragg wavelength shift approach in doped optical fiber;Applied Optics;2002-11-01
4. Strain dependence of fluorescence from rare-earth-doped optical fibres: application to the simultaneous, co-located, measurement of strain and temperature;Composite Structures;2002-11
5. Optical-Fiber Sensors: Temperature and Pressure Sensors;MRS Bulletin;2002-05
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