首页> 外文期刊>Journal of Lightwave Technology >Microfiber-Knot-Resonator-Induced Partial Elimination of Longitudinal Modes in Fiber Lasers for In-Tune-Switchable Nanosecond Pulse Generation
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Microfiber-Knot-Resonator-Induced Partial Elimination of Longitudinal Modes in Fiber Lasers for In-Tune-Switchable Nanosecond Pulse Generation

机译:超细纤维结谐振器引起的光纤激光器纵向模式的部分消除,用于调谐可调谐纳秒脉冲产生

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摘要

By incorporating a house-made microfiber knot resonator (MKR), mode-locking regime transformation in an erbium-doped fiber (EDF) laser was achieved. With typical nonlinear polarization rotation (NPR) as the mode-locker, similar to 890 fs soliton pulses could be directly produced from the EDF laser. However, once the MKR was further incorporated in it, the emitted pulse duration fell into the nanosecond regime, and meanwhile the spectral bandwidth dramatically narrowed down around 0.05 nm. This resulted from that the longitudinal laser modes were greatly eliminated by the MKR. The MKR exhibits tightly-packed, extremely narrow transmission teeth, acting as a comb-like, sharp-rolloff bandpass filter. The mode elimination factor could reach similar to 98.81%. Further manipulating the intra-cavity polarization state, the emission wavelength could be switchable from one of the transmission teeth of the MKR to another, due to the intrinsic polarization-sensitivity of the NPR. Our results demonstrated that MKR could be a useful device in fiber lasers to enable some artificially pre-defined spectral and temporal characteristics through pre-designing on the related parameters of the MKR. This could also provide a route to transform the temporal characteristics through tailoring the spectral profile, i.e., manipulating the permitted longitudinal laser modes, in fiber lasers.
机译:通过合并一个自制的超细纤维结谐振器(MKR),在掺in光纤(EDF)激光器中实现了锁模态转换。使用典型的非线性偏振旋转(NPR)作为锁模器,可以从EDF激光器直接产生类似于890 fs的孤子脉冲。但是,一旦将MKR进一步纳入其中,发射的脉冲持续时间将落入纳秒范围,同时光谱带宽显着缩小至0.05 nm附近。这是由于MKR大大消除了纵向激光模式。 MKR表现出紧密堆积,极窄的传动齿,可充当梳状,急剧下降的带通滤波器。模式消除因子可以达到98.81%。由于NPR的固有极化敏感性,进一步操纵腔内极化状态,发射波长可以从MKR的一个传输齿切换到另一个。我们的结果表明,MKR可能是光纤激光器中的有用设备,可以通过对MKR的相关参数进行预先设计来实现一些人为预先定义的光谱和时间特性。这也可以提供一种通过调整光谱轮廓来改变时间特性的途径,即在光纤激光器中操纵允许的纵向激光模式。

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