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Beam combining and SBS suppression in white noise and pseudorandom modulated amplifiers

机译:白噪声和伪随机调制放大器中的光束组合和SBS抑制

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White noise phase modulation (WNS) and pseudo-random binary sequence phase modulation (PRBS) are effective techniques for mitigation of nonlinear effects such as stimulated Brillouin scattering (SBS); thereby paving the way for higher power narrow linewidth fiber amplifiers. However, detailed studies comparing both coherent beam combination and the SBS suppression of these phase modulation schemes have not been reported. In this study an active fiber cutback experiment is performed comparing the enhancement factor of a PRBS and WNS broadened seed as a function of linewidth and fiber length. Furthermore, two WNS and PRBS modulated fiber lasers are coherently combined to measure and compare the fringe visibility and coherence length as a function of optical path length difference. Notably, the discrete frequency comb of PRBS modulation provides a beam combining re-coherence effect where the lasers periodically come back into phase. Significantly, this may reduce path length matching complexity in coherently combined fiber laser systems.
机译:白噪声相位调制(WNS)和伪随机二进制序列相位调制(PRBS)是缓解非线性效应(如受激布里渊散射(SBS))的有效技术。从而为更高功率的窄线宽光纤放大器铺平了道路。但是,尚未有比较相干光束组合和SBS对这些相位调制方案的抑制的详细研究。在这项研究中,进行了一项主动纤维削减实验,比较了PRBS和WNS拓宽种子的增强因子与线宽和纤维长度的关系。此外,将两个WNS和PRBS调制光纤激光器相干组合,以测量和比较作为光程长度差的函数的条纹可见度和相干长度。值得注意的是,PRBS调制的离散频率梳提供了光束组合的重新相干效应,其中激光器周期性地恢复相位。明显地,这可以减少相干组合的光纤激光器系统中的路径长度匹配复杂度。

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