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首页> 外文期刊>Photonics >Numerical Study on the Soliton Mode-Locking of the Er 3+ -Doped Fluoride Fiber Laser at ~3 μm with Nonlinear Polarization Rotation
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Numerical Study on the Soliton Mode-Locking of the Er 3+ -Doped Fluoride Fiber Laser at ~3 μm with Nonlinear Polarization Rotation

机译:非线性偏振旋转约3μm的掺Er 3+氟化物光纤激光器孤子锁模的数值研究

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Recent interest in the application of mid-infrared (mid-IR) lasers has made the generation of ~3 μm ultrafast pulses a hot topic. Recently, the generation of femtosecond-scale pulses in Er 3+ -doped fluoride fiber lasers has been realized by nonlinear polarization rotation (NPR). However, a numerical study on these fiber lasers has not been reported yet. In this work, the output properties of the NPR passively mode-locked Er 3+ -doped fluoride fiber ring laser in ~3 μm have been numerically investigated based on the coupled Ginzburg–Landu equation. The simulation results indicate that stable uniform solitons (0.75 nJ) with the pulse duration of femtosecond-scale can be generated from this fiber laser. This numerical investigation can provide some reference for developing the high energy femtosecond soliton fiber lasers in the mid-IR.
机译:最近对中红外(mid-IR)激光器的应用产生了兴趣,使〜3μm超快脉冲的产生成为热门话题。近来,已经通过非线性偏振旋转(NPR)实现了掺Er 3+的氟化物光纤激光器中飞秒级脉冲的产生。然而,尚未报道对这些光纤激光器的数值研究。在这项工作中,基于耦合的Ginzburg–Landu方程,对NPR被动锁模掺Er 3+的氟化物光纤环形激光器在〜3μm中的输出特性进行了数值研究。仿真结果表明,可以从这种光纤激光器产生具有飞秒级脉冲持续时间的稳定均匀孤子(0.75 nJ)。该数值研究可为中红外高能飞秒孤子光纤激光器的研制提供参考。

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