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Effect of feedback elements on the phase locking properties of fiber lasers via mutual injection coupling

机译:互注入耦合对反馈元件对光纤激光器锁相特性的影响

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Coherent combining of several multi-wavelength fiber lasers is a promising approach to suppress the nonlinear effects and improve the output power. Passive phase locking of two multi-wavelength fiber lasers has been demonstrated by using mutual injection coupling and spatial filtering technique, and the effect of feedback elements on the phase locking properties has been investigated in detail. Three different kinds of feedback elements, fiber Bragg grating (FBG), fiber loop mirror (FLM) and fiber reflection mirror (FRM) are employed as the component laser's high reflection mirror to construct the phase locking array respectively. Compared with the traditional feedback element FBG, the FLM is made of a 3dB fiber coupler and provide high reflection feedback in a wide spectral range for fiber laser, and the FRM is also a wide-band reflector with the fiber end coated by multilayer dielectric film. When the FLM and FRM are employed as the component laser's feedback elements, a large number of longitudinal modes operate simultaneously and the spectra vary continuously. Fortunately, stable phase locking has been obtained as long as the single-mode filtering fiber is introduced into the feedback loop, and obvious interference patterns with high fringe visibility have been observed in far field. The phased array's output power can also keep stable at the same time, and its amount is higher than the case of using FBG. In conclusion, the research results indicate that efficient phase locking of several multi-wavelength fiber lasers can also be achieved by passive self-adjusting method and higher output power can be obtained compared with the usual coherent combining of narrow-band laser beams, as long as necessary optical coupling is introduced among component lasers and proper spatial filtering measures are adopted.
机译:几种多波长光纤激光器的相干组合是抑制非线性效应并提高输出功率的一种有前途的方法。通过互注入耦合和空间滤波技术证明了两种多波长光纤激光器的无源锁相,并详细研究了反馈元件对锁相特性的影响。三种不同的反馈元件,分别是光纤布拉格光栅(FBG),光纤环形镜(FLM)和光纤反射镜(FRM)作为分量激光器的高反射镜来构成锁相阵列。与传统的反馈元件FBG相比,FLM由3dB的光纤耦合器制成,可在宽光谱范围内为光纤激光器提供高反射反馈,而FRM也是宽带反射器,其光纤端覆盖有多层介电膜。当将FLM和FRM用作组成激光器的反馈元件时,大量的纵向模式会同时运行,并且光谱会连续变化。幸运的是,只要将单模滤波光纤引入反馈环路中,就可以获得稳定的锁相,并且在远场中也观察到了明显的条纹,具有较高的条纹可见性。相控阵的输出功率也可以同时保持稳定,并且其功率高于使用FBG的情况。总之,研究结果表明,与常规窄带激光束相干组合相比,无源自调节方法也可以实现几种多波长光纤激光器的有效锁相,并且可以获得更高的输出功率。由于在组件激光器之间引入了必要的光耦合,并采取了适当的空间滤波措施。

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