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首页> 外文期刊>Journal of optics >Investigation of mid-infrared parabolic pulse evolution in a mode-locked Er-doped fiber laser based on the nonlinear polarization rotation technique
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Investigation of mid-infrared parabolic pulse evolution in a mode-locked Er-doped fiber laser based on the nonlinear polarization rotation technique

机译:基于非线性偏振旋转技术的模锁式ER掺杂光纤激光中红外抛物脉冲演化研究

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摘要

The parabolic pulse evolution in a mode-locked Er-doped fiber laser operating at 2.8 mu m has been numerically investigated by utilizing the nonlinear polarization rotation technique. In this work, the parabolic pulse evolution has been investigated by utilizing a segment of chalcogenide dispersion-decreasing bandgap fiber and a piece of Er-doped ZBLAN around 2.8 mu m, whose total dispersion is in normal dispersion regime. Stable parabolic pulses can be obtained in the soft-glass fiber resonator when the polarizing angles changes from 0.356 to 0.4 7 pi and the net group velocity dispersion from 0.006 to 0.03 ps(2), respectively. Through optimizing the dispersion (i.e. net dispersion is 0.014 ps(2)), the pulse with 7.35 ps duration and 1.7 nJ pulse energy fits quite well with the parabolic profile. The ratio of maximum to minimum pulse width in the cavity is about 10. The pulse energy and K parameter increase with the increase of the net dispersion. As the net dispersion increases to 0.03 ps(2), the pulse energy can reach up to 2.5 nJ. These results can be regarded as guidance when designing a wave-breaking-free fiber laser in the mid-infrared region.
机译:通过利用非线性偏振旋转技术,已经在数值上研究了在2.8μm的模式锁定的ER掺杂光纤激光器中的抛物线脉冲演化。在这项工作中,通过利用硫属化物分散的带隙纤维的一段和大约2.8μm的一块掺杂Zblan进行研究,抛物线脉冲演化已经研究其总分散体正常分散状态。当偏振角从0.356〜0.4 7 PI和0.006至0.03 ps(2)的净群速度分散,可以在软玻璃纤维谐振器中获得稳定的抛物面脉冲。通过优化分散体(即Net Dispersersion是0.014 PS(2)),脉冲具有7.35 ps持续时间和1.7 nj脉冲能量与抛物线曲线相当合适。腔中最大到最小脉冲宽度的比率约为10.脉冲能量和K参数随着净分散的增加而增加。随着净散体增加到0.03 ps(2),脉冲能量可达2.5 nj。当在中红外区域设计波断线纤维激光时,这些结果可以被视为指导。

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