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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Numeral analysis of spectral shaping based on superstructure fiber Bragg grating in high-power Nd:glass chirped pulse amplification system
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Numeral analysis of spectral shaping based on superstructure fiber Bragg grating in high-power Nd:glass chirped pulse amplification system

机译:大功率Nd:玻璃chi脉冲放大系统中基于超结构光纤布拉格光栅的频谱整形数值分析

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Using the genetic algorithm, we design a superstructure fiber Bragg grating (SSFBG) to pre-compensate gain narrowing and gain saturation effects in a high-power Nd:glass chirped pulse amplification system. An inverse engineering operation of chirped pulse amplification processing is used to calculate the target spectrum of the seed pulse and then the response function of the SSFBG can be obtained. Some numerical simulations are given to realize a 20 μJ, 15 nm ultrashort seed pulse to the hundreds Joules, 8 nm optimal fourth order super-Gaussian chirped pulses in a high power Nd:glass amplification system. The results show that the gain narrowing and gain saturation effects will be reduced largely when a SSFBG, which has a proper refractive index modulation distribution, chirp coefficient and length, is used. It is believed that this proposed method will provide a theoretical direction for the future experiment. Moreover, it will also be useful and flexible for the spectral transform in other chirped pulse application areas.
机译:使用遗传算法,我们设计了一种超结构光纤布拉格光栅(SSFBG),以在高功率Nd:玻璃chi脉冲放大系统中预补偿增益变窄和增益饱和效应。利用chi脉冲放大处理的逆工程运算来计算种子脉冲的目标频谱,从而可以获得SSFBG的响应函数。给出了一些数值模拟,以在高功率Nd:玻璃放大系统中对数百个焦耳,8 nm最佳四阶超高斯chi脉冲实现20μJ,15 nm超短种子脉冲。结果表明,当使用具有适当的折射率调制分布,线性调频系数和长度的SSFBG时,增益变窄和增益饱和效应将大大降低。相信该提出的方法将为将来的实验提供理论指导。而且,对于其他chi脉冲应用领域中的频谱变换,它也是有用且灵活的。

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