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Numerical study on the maximum small-signal gain coefficient in passively mode-locked fiber lasers

机译:被动锁模光纤激光器最大小信号增益系数的数值研究

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Ultrashort pulses have been found to have important applications in many fields, such as ultrafast diagnosis, biomedical engineering, and optical imaging. Passively mode-locked fiber lasers have become a tool for generating picosecond and femtosecond pulses. In this paper, the evolution of a picosecond laser pulse in different stable passively mode-locked fiber laser is analyzed using nonlinear Schroedinger equation. Firstly, different mode-locked regimes are calculated with different net cavity dispersion (from ~-0.3 ps~2 to ~+0.3 ps~2). Then we calculate the maximum small-signal gain on the different net cavity dispersion conditions, and estimate the pulse width, 3 dB bandwidth and time bandwidth product (TBP) when the small-signal gain coefficient is selected as the maximum value. The results show that the small signal gain coefficient is approximately proportional to the net cavity. Moreover, when the small signal gain coefficient reaches the maximum value, the pulse width of the output pulse and their corresponding TBP show a trend of increase gradually, and 3dB bandwidth shows a trend of increase firstly and then decrease. In addition, in the case that the net dispersion is positive, because of the pulse with quite large frequency chirp, the revolution to dechirp the pulse is researched and the output of the pulse is compressed and its compression ratio reached more than 10 times. The results provide a reference for the optimization of passively mode-locked fiber lasers.
机译:已经发现超短脉冲在许多领域具有重要应用,例如超快速诊断,生物医学工程和光学成像。被动锁模光纤激光器已经成为产生皮秒和飞秒脉冲的工具。本文使用非线性Schroedinger方程分析了皮秒激光脉冲在不同的稳定被动锁模光纤激光器中的演化。首先,以不同的净腔色散(〜-0.3 ps〜2到〜+ 0.3 ps〜2)计算出不同的锁模方式。然后,我们计算了在不同净腔扩散条件下的最大小信号增益,并在选择小信号增益系数作为最大值时估算了脉冲宽度,3 dB带宽和时间带宽乘积(TBP)。结果表明,小信号增益系数与净腔近似成比例。此外,当小信号增益系数达到最大值时,输出脉冲的脉冲宽度及其对应的TBP呈逐渐增大的趋势,而3dB带宽呈先增大然后减小的趋势。另外,在净色散为正的情况下,由于频率线性调频脉冲很大,对脉冲去线性调频进行了研究,对脉冲的输出进行了压缩,压缩比达到10倍以上。研究结果为优化无源锁模光纤激光器提供了参考。

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