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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Unintentional Polarization Dependent Pulsewidth of Graphene Mode-Locked Er-Doped Fiber Lasers
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Unintentional Polarization Dependent Pulsewidth of Graphene Mode-Locked Er-Doped Fiber Lasers

机译:石墨烯锁模掺Er光纤激光器的非故意偏振相关脉冲宽度

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The unique polarization dependent pulsation phenomenon in a graphene mode-locked erbium-doped fiber laser (ML-EDFL) is explored by the interaction between intracavity weak nonlinear polarization rotation and strong saturable absorption. With unintentional polarization dependent loss (PDL) induced by twisting single-mode fiber (SMF) in an intracavity polarization controller (PC), the unique pulsewidth tunability in a polarizer-free graphene ML-EDFL can be observed. Numerical and experimental procedures are established to combine the hybrid effects and to realize the possible detuning range of intracavity polarization angle for polarization dependent mode-locking dynamics. Twisting SMF induced unintentional PDL in the polarizer-free EDFL contributes a tiny self-amplitude modulation (SAM) coefficient of ${gamma _{rm NPR}} = 5.36 times {10^{ - 4}}sin 2{theta _P}$. The mode-locking stability still relies on the graphene saturable absorption to optimize the SAM up to ${gamma _{rm total}} = 1.46 times {10^{ - 3}}$ and shorten the EDFL pulsewidth to 330 fs. These clearly elucidate the enigma on polarization dependency of most polarizer-free ML-EDFLs with built-in PC. Even an unintentional weak polarization dependency in the EDFL without any polarizer can induce a residual PDL to introduce a polarization angle-dependent SAM coefficient, which declares the importance on controlling intracavity polarization for stabilizing and optimizing the graphene ML-EDFL with unintentional nonlinear polarization rotation induced PDL.
机译:通过腔内弱非线性偏振旋转和强饱和吸收之间的相互作用,探索了石墨烯锁模掺fiber光纤激光器(ML-EDFL)中独特的偏振相关脉动现象。通过在腔内偏振控制器(PC)中扭曲单模光纤(SMF)引起无意的偏振相关损耗(PDL),可以观察到无偏振器石墨烯ML-EDFL中独特的脉宽可调性。建立了数值和实验程序,以结合混合效应并实现腔内偏振角的可能失谐范围,以实现偏振相关的锁模动力学。在无偏振器的EDFL中,扭曲SMF引起的意外PDL贡献了微小的自幅度调制(SAM)系数,为$ {gamma _ {rm NPR}} = 5.36倍{10 ^ {-4}} sin 2 {theta _P} $ 。锁模稳定性仍然依赖于石墨烯可饱和吸收来将SAM优化至$ {gamma _ {rm total}} = 1.46倍{10 ^ {-3}} $,并将EDFL脉冲宽度缩短至330 fs。这些清楚地阐明了大多数内置PC的无偏振器ML-EDFL的偏振依赖性。即使没有任何偏振器的EDFL中无意识的弱偏振依赖性也会导致残留的PDL引入与偏振角有关的SAM系数,这表明控制腔内偏振对于稳定和优化石墨烯ML-EDFL的重要性,而无意识的非线性偏振旋转会引起PDL。

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