对于一些具体的泵浦情况,通过激光速率方程理论上探讨了激光器的猝灭效果,并且对激光器的一些重要参数进行了一些研究。
For some pump pulses, the quenching effect of the quenched laser was analysed by laser rate equations. In addition some important parameters of the lasers were discussed.
本文用速率方程分析了泵浦光源中激光波长辐射对激光介质激发态粒子数积累和激光器阀值的影响情况。
By use of rate equations, we have analyzed the effect ot laser wavelength radiation in pump light source on excited state population accumulation of laser medium and laser threshold.
根据由速率方程导出的一组微分-积分方程,研究了闪光灯泵浦染料激光器PTM运转时的能量转移特性。
The energy transfer characteristics of a flashlamp pumped dye laser in PTM operation is investigated according to the differential-integral equations derived from the rate equations.
从速率方程出发,根据泵浦光和振荡光的场分布函数,进行了简单的数值模拟,模拟结果与实验结果能够较好的吻合。
Staring from the rate-equation theory , according to the field distribution function , some simple mathmatical simulations are made which meet the experiment better.
根据染料产生激光的能级系统,考虑了准连续泵浦的特点,导出了准连续泵浦染料激光速率方程。
According to characters of quasi-CW pumped dye laser, as well as energy system pertaining to dye lasers, we have derived the rate-equation of quasi-CW pumped dye laser.
以速率方程模型为基础研究了光谱特性对半导体泵浦碱蒸气激光器性能的影响。
The influence of spectrum characteristics on diode pumped alkali laser has been studied based on the rate equations.
本章分别介绍了激光器的模式理论、速率方程的理论、泵浦光和振荡光的空间分布以及对单频检测装置。
This chapter introduced the theory of laser mode, the rate equation theory, the spatial distribution of the pump laser and the oscillating laser and the single frequency detection device.
我们的分析结果还指出这种多重单频正弦波泵浦相位调制技术更加适合于将来的高比特速率系统。
Our simulation results also show that these multi-tone pump phase modulation techniques are more appropriate for the future high bit rate systems.
基于激光器速率方程,分析了激光输出与光纤长度、后腔镜的关系,讨论了小功率泵浦时光纤内的功率分布情况。
Based on rate equations, the laser output characteristic under different fiber length and back-cavity mirrors is studied, and the distribution of pump power and laser power is discussed.
基于激光器速率方程,分析了激光输出与光纤长度、后腔镜的关系,讨论了小功率泵浦时光纤内的功率分布情况。
Based on rate equations, the laser output characteristic under different fiber length and back-cavity mirrors is studied, and the distribution of pump power and laser power is discussed.
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