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Energy transfer up-conversion and excited state absorption of laser radiation in Nd:YLF laser crystals

机译:Nd:YLF激光晶体中激光辐射的能量转移上转换和激发态吸收

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Experiments at room temperature were carried out to study the higher order processes that produced the yellow and blue fluorescence observed in Nd:YLF laser crystals, which were pumped by lasers with wavelengths between 785 nm and 811 nm, and with the pump power density ranging from 10 to 30 kW/cm/sup 2/, or the stored energy density, 15-45 J/cm/sup 3/. The analysis of the experimental results provided an explanation for the performance degradation of a Q-switched laser with increasing pump intensity. These higher order processes were energy transfer up-conversion and excited state absorption of both pump and laser radiation. A model was also developed based upon rate equations to describe these higher order processes. This model allowed us to discriminate between these processes and to determine which one played the most important role. The experimental results agreed well with the predictions of the model. It is concluded that the energy transfer up-conversion process is the dominant mechanism for the population of the /sup 4/G/sub 7/2/ multiplet. It is also concluded that excited state absorption of the 1.05 /spl mu/m or 1.3 /spl mu/m radiation from the /sup 4/G/sub 7/2/ multiplet play a significant role in populating the /sup 2/P/sub 3/2/, /sup 2/D(1)/sub 5/2/, and /sup 2/P/sub 1/2 / manifolds, and in the performance of Nd:YLF lasers operating in the pulsed mode. The effect of excited state absorption of the pump radiation from the /sup 4/F/sub 1/2 / multiplet is much less important.
机译:进行了室温下的实验,以研究在Nd:YLF激光晶体中观察到的产生黄色和蓝色荧光的更高阶过程,该晶体由波长在785 nm至811 nm之间的激光器泵浦,泵浦功率密度为10至30 kW / cm / sup 2 /,或存储的能量密度15-45 J / cm / sup 3 /。实验结果的分析为随着泵浦强度增加而调Q激光器的性能下降提供了解释。这些更高阶的过程是能量转移上转换以及泵浦和激光辐射的激发态吸收。还基于速率方程式开发了一个模型来描述这些高阶过程。这种模型使我们能够区分这些过程,并确定哪个过程扮演了最重要的角色。实验结果与模型的预测吻合良好。结论是,能量传递上转换过程是/ sup 4 / G / sub 7/2 /多重峰的主要机制。还得出结论,来自/ sup 4 / G / sub 7/2 /多重峰的1.05 / spl mu / m或1.3 / spl mu / m辐射的激发态吸收在填充/ sup 2 / P中起重要作用/ sub 3/2 /,/ sup 2 / D(1)/ sub 5/2 /和/ sup 2 / P / sub 1/2 /流形,并且具有以脉冲模式工作的Nd:YLF激光器的性能。来自/ sup 4 / F / sub 1/2 /多重峰的泵浦辐射的激发态吸收效应不那么重要。

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