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Photonic crystal fiber for fundamental mode operation of multicore fiber lasers and amplifiers

机译:用于多芯光纤激光器和放大器基本模式操作的光子晶体光纤

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摘要

A mode-selection method based on a single-mode photonic crystal fiber (PCF) in the multicore fiber (MCF) lasers is presented. The designed PCF has a central core region formed by a missing air-hole, and three air-hole rings. With an appropriate choice of the design parameters of the PCF, the power coupling between the fundamental mode (FM) of the PCF and the fundamental MCF mode can be much higher than those between the FM and the other supermodes. As a result, the fundamental MCF mode has the maximum power reflection coefficient on the right-hand side of the MCF laser cavity, and dominates the output laser power. Since the maximum power of the fundamental MCF mode will lead to the desired laser beam profile, higher the fraction of the fundamental MCF mode power contained in the total output power contributes to higher beam quality. The numerical simulations show that the effectiveness of the fundamental MCF mode-selection is higher in the MCF lasers with the PCF as a mode-selection component than in the MCF lasers based on the free-space Talbot cavity method. Additionally, for the MCF amplifiers, an approach is presented to decrease the sensitivity of the amplifier performance to the variation of Gaussian beam waist utilizing the coupling between the Gaussian beam and the FM of the PCF. The numerical results show that this method can effectively increase the design flexibility for a broad range of the Gaussian beam waist.
机译:提出了一种基于多芯光纤激光器中单模光子晶体光纤的模式选择方法。设计的PCF具有由缺失的气孔和三个气孔环形成的中心核心区域。与PCF的设计参数的适当选择,PCF的基本模式(FM)和基本MCF模式之间耦合的功率可以比所述FM和其它超模之间的高得多。结果,基本的MCF模式在MCF激光腔的右侧具有最大的功率反射系数,并且支配着输出激光功率。由于基本MCF模式的最大功率将导致所需的激光束轮廓,因此总输出功率中包含的基本MCF模式功率的分数越高,光束质量就越高。数值模拟表明,在以PCF为模式选择组件的MCF激光器中,基本MCF模式选择的有效性要高于基于自由空间Talbot腔法的MCF激光器。另外,对于MCF放大器,提出了一种利用高斯光束和PCF的FM之间的耦合来降低放大器性能对高斯光束腰部变化的敏感性的方法。数值结果表明,该方法可以有效地提高宽范围高斯光束腰部的设计灵活性。

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