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Fiber-based coherent polarization beam combining with cascaded phase-locking and polarization-transforming controls

机译:基于纤维的相干偏振梁与级联锁相锁相和偏振变换控制相结合

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摘要

In this paper, the fiber-based coherent polarization beam combining (CPBC) with cascaded phase-locking (PL) and polarization-transforming (PT) controls was proposed to combine imbalanced input beams where the number of the input beams is not binary, in which the PL control was performed using the piezoelectric-ring fiber-optic phase compensator, and the PT control was realized by the dynamic polarization controller, simultaneously. The principle of the proposed CPBC was introduced. The performance of the proposed CPBC was analyzed in comparison with the CPBC based on PL control and the CPBC based on PT control. The basic experiment of CPBC of three laser beams was carried out to validate the feasibility of the proposed CPBC, where cascaded controls of PL and PT were implemented based on stochastic parallel gradient descent algorithm. Simulation and experimental results show that the proposed CPBC incorporates the advantages of the two previous CPBC schemes and performs well in the closed loop. Moreover, the expansibility and the application of the proposed CPBC were validated by scaling the CPBC to combine seven laser beams. We believe that the proposed fiber-based CPBC with cascaded PL and PT controls has great potential in free space optical communications employing the multi-aperture receiver with asymmetric structure.
机译:本文中,提出了具有级联锁相(PL)的光纤的相干偏振束组合(CPBC)和偏振变换(PT)控制,以组合IMBalanced输入光束,其中输入波束的数量不是二进制的,使用压电环光纤相位补偿器进行PL控制,并且通过动态偏振控制器同时实现PT控制。介绍了拟议的CPBC的原则。基于PT控制的PL控制和CPBC,与CPBC进行了分析的表现,基于PT控制,分析了所提出的CPBC的性能。进行了三个激光束CPBC的基本实验,以验证所提出的CPBC的可行性,其中PL和PT的级联控制是基于随机平行梯度下降算法实现的。仿真和实验结果表明,所提出的CPBC采用了前两种CPBC方案的优点,并在闭环中执行良好。此外,通过缩放CPBC来组合七个激光束来验证所提出的CPBC的可扩展性和应用。我们认为,具有级联PL和PT控制的所提出的基于纤维的CPBC在采用具有不对称结构的多孔接收器的自由空间光通信中具有很大的潜力。

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