利用速率方程分析,可以得到精细结构碰撞转移速率系数。
Using a two-state rate equation model the transfer rate coefficients from Cs(6PJ) had b.
利用速率方程理论,得到包含激光增益介质反转密度、光子密度和饱和吸收介质基态布居数密度的速率方程组。
Using rate equation theory, the equation group including the population inversion density of the gain medium, photon density and the absorber ground state population density is acquired.
本文从恒压过滤速率方程出发,利用多项式回归的方法求取过滤常数,并以一实例将之与教材中介绍的方法进行了比较。
The polynomial regression based on the constant-pressure filtration rate equation has been presented to handle the experimental data and compared with the methods in literature through an example.
从激光器的单模速率方程出发,利用数值方法研究了在不同的增益开关状态下,输出光脉冲的时域及频域特性。
With numerical calculation from single mode rate equation of semiconductor laser, the output pulse parameters in time and frequency domains are investigated under different gain switching conditions.
从速率方程出发,利用线性稳定性分析方法,分析了单片集成双稳半导体激光器输出光强的稳定性。
We have investigated the stability of the output laser intensity of an integrated bistable laser diode starting from the rate-equations and by means of a linear-stability analysis method.
利用非线性薛定谔方程和速率方程,研究了啁啾脉冲在增益介质中多程放大的特性。
The multipass amplification characters of the chirped pulse in gain medium were studied with the Schrdinger equation and population equation.
利用多模速率方程对选模和调谐性能进行了理论分析,计算结果与实验结果基本相符。
A theoretical analysis of the mode selection and tuning characteristics using multimode rate-equations is presented. The calculated results are in agreement with the experimental ones.
从速率方程出发,利用小信号分析方法对垂直腔半导体光放大器(VCSOA)的频率响应特性进行了研究。
Frequency response characteristics of vertical cavity semiconductor optical amplifiers (VCSOAs) are investigated by utilizing small signal analysis method.
利用增益开关和Q开关双机制作用,压窄了调q脉宽,提高了输出功率。用速率方程理论对过程计算,与实验结果较符合。
When Q-switch and gain switch were applied the peak pulse power was increased and pulse width decreased. A comparison of experimental data with rate-equation theory was made, and agreed well.
利用增益开关和Q开关双机制作用,压窄了调q脉宽,提高了输出功率。用速率方程理论对过程计算,与实验结果较符合。
When Q-switch and gain switch were applied the peak pulse power was increased and pulse width decreased. A comparison of experimental data with rate-equation theory was made, and agreed well.
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