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Efficient femtosecond pulse generation using a parabolic amplifier combined with a pulse compressor. II. Finite gain-bandwidth effect

机译:使用抛物线放大器与脉冲压缩器结合可有效产生飞秒脉冲。二。有限的增益带宽效应

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摘要

A derivation of an analytical expression for the propagation of a parabolic pulse in an optical fiber amplifier with a finite Lorentzian gain bandwidth is presented. Through a separation of variables combined with the method of stationary phase, we derive equations in both time and frequency spaces to obtain the analytical solution. This results in a compact analytical form that has a number of physical meanings. It shows that the finite gain bandwidth seriously limits the performance of parabolic amplification by distorting both the chirp and the frequency envelope, thus preventing efficient pulse compression required for high-power femtosecond pulse generation. The validity of the analytical derivation is verified through numerical simulations using the split-step Fourier method, showing an excellent agreement with the derived analytical solution, in pulse shape, chirp, and the optical spectrum. (c) 2006 Optical Society of America.
机译:给出了在具有有限洛伦兹增益带宽的光纤放大器中抛物线形脉冲的传播的解析表达式的推导。通过变量的分离与固定相方法相结合,我们在时间和频率空间中导出了方程,以获得解析解。这导致具有许多物理意义的紧凑分析形式。它表明,有限增益带宽通过使线性调频脉冲和频率包络失真而严重限制了抛物线放大的性能,从而阻止了高功率飞秒脉冲产生所需的有效脉冲压缩。通过使用分步傅立叶方法进行的数值模拟,验证了分析推导的有效性,在脉冲形状,线性调频和光谱方面,与推导的分析解决方案显示出极好的一致性。 (c)2006年美国眼镜学会。

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