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Investigation of passively mode-locked fiber laser with adjustable pulse-width

机译:可调脉冲宽度的被动锁模光纤激光器的研究

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In the paper, we have numerically studied how the initial conditions influence the mode-locked soliton formation in the passively mode-locked fiber laser by using the nonlinear polarization rotation technique. We find that once the laser gain is fixed, a soliton with fixed peak power and pulse width will be formed, which is independent of the initial seed pulse conditions. Further numerical simulations have shown that both the peak power and the pulse width of the mode-locked soliton are varied with the linear cavity delay bias setting. We identified that the larger the linear cavity phase setting, the higher the soliton peak and the narrower the soliton pulse achievable in certain range, and adjustable pulse width passively mode-locked fiber laser can be formed by turning the linear cavity delay bias.
机译:在本文中,我们使用非线性偏振旋转技术,数值研究了初始条件如何影响无源锁模光纤激光器中锁模孤子的形成。我们发现,一旦激光增益固定,将形成具有固定峰值功率和脉冲宽度的孤子,而该孤子与初始种子脉冲条件无关。进一步的数值模拟表明,锁模孤子的峰值功率和脉冲宽度都随线性腔延迟偏置设置而变化。我们发现线性腔相位设置越大,在一定范围内孤子峰越高,孤子脉冲越窄,通过改变线性腔延迟偏置可以形成可调脉冲宽度的被动锁模光纤激光器。

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