Title :
Measuring the Elevated Temperature Dependence of Up-Conversion in Nd:YAG
Author :
RenPeng Yan ; Sung Jin Yoon ; Beecher, Stephen J. ; Mackenzie, Jacob I.
Author_Institution :
Nat. Key Lab. of Sci. & Technol. on Tunable Laser, Harbin Inst. of Technol., Harbin, China
Abstract :
We present the measurement of the temperature dependence of the energy transfer up-conversion coefficient from the main upper laser level (4F3/2) of 1at.% doped Nd:YAG. This is achieved by a very simple method employing a z-scan technique, monitoring the transmitted power of a probe laser tuned to the main absorption peak at 808 nm. For analysis, a simple model was developed and the temperature dependence of the absorption coefficient for this absorption band, covering the temperature range from 300-450 K, was measured. A spatially dependent two-level rate equation model is described, which simulates the relationship between the incident pump irradiance and the power transmitted by the crystal, as a function of its temperature. By comparing the experimental results with the model, we obtain a value for the energy transfer up-conversion coefficient of 4.7 ± 0.5 × 10-17 cm3/s, at room temperature, decreasing to 1.6 ± 0.2 × 10-17 cm3/s at 450 K.
Keywords :
absorption coefficients; laser tuning; neodymium; optical frequency conversion; optical pumping; solid lasers; YAG:Nd; absorption band; absorption coefficient; energy transfer up-conversion coefficient; incident pump irradiance; probe laser tuning; spatially dependent two-level rate equation model; temperature 293 K to 298 K; temperature 300 K to 450 K; temperature dependence; transmitted power; upper laser level; z-scan technique; Absorption; Crystals; Laser beams; Laser excitation; Measurement by laser beam; Temperature dependence; Temperature measurement; Nd:YAG; absorption coefficient; up-conversion;
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
DOI :
10.1109/JSTQE.2014.2336776