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Coherent combining of fiber-laser-pumped frequency converters using all-fiber electro-optic modulator for active phase control

机译:光纤激光器泵浦变频器的相干组合,使用全光纤电光调制器进行有源相位控制

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Coherent beam combining (CBC) by active phase control could be useful for power scaling fiber-laser-pumped optical frequency converters like OPOs. However, a phase modulator operating at the frequency-converted wavelength is needed, which is non standard component. Fortunately, nonlinear conversion processes rely on a phase-matching condition correlating, not only the wavevectors of the coupled waves, but also their phases. This paper demonstrates that, using this phase correlation for indirect control of the phase, coherent combining of optical frequency converters is feasible using standard all-fibered electro-optic modulators. For the sake of demonstration, this new technique is experimentally applied twice for continuous wave second-harmonic-generator (SHG) combination: ⅰ) combining 2 SHG of 1.55-μm erbium-doped fiber amplifiers in PPLN crystals generating 775-nm beams; ⅱ) combining 2 SHG of 1.064-μm ytterbium-doped fiber amplifiers in LBO crystals generating 532-nm beams. Excellent CBC efficiency is achieved on the harmonic waves in both these experiments, with λ/20 and λ/30 residual phase error respectively. In the second experiment, I/Q phase detection is added on fundamental and harmonic waves to measure their phase variations simultaneously. These measurements confirm the theoretical expectations and formulae of correlation between the phases of the fundamental and harmonic waves. Unexpectedly, in both experiments, when harmonic waves are phase-locked, a residual phase difference remains between the fundamental waves. Measurements of the spectrum of these residual phase differences locate them above 50 Hz, revealing that they most probably originate in fast-varying optical path differences induced by turbulence and acoustic-waves on the experimental breadboard.
机译:有源相位控制的相干光束合并(CBC)对于功率缩放光纤激光器泵浦光学变频器(如OPO)可能有用。然而,需要在频率转换的波长下工作的相位调制器,这是非标准组件。幸运的是,非线性转换过程依赖于相位匹配条件,不仅与耦合波的波矢量相关,而且与它们的相位相关。本文证明,使用这种相位相关性间接控制相位,可以使用标准的全光纤电光调制器对光变频器进行相干组合。为了演示,这项新技术在连续波二次谐波发生器(SHG)组合中进行了两次实验应用:combining)将2个1.55μm掺b光纤放大器的SHG组合在产生775 nm光束的PPLN晶体中; ⅱ)将两个SHG的1.064μm掺fiber光纤放大器组合在LBO晶体中,产生532 nm光束。在这两个实验中,谐波均具有出色的CBC效率,分别具有λ/ 20和λ/ 30残余相位误差。在第二个实验中,对基波和谐波添加了I / Q相位检测,以同时测量其相位变化。这些测量结果证实了理论上的期望以及基波和谐波相位之间的相关公式。出乎意料的是,在两个实验中,当谐波被锁相时,在基波之间仍然存在残余相位差。对这些残余相位差的频谱进行测量后,将它们定位在50 Hz以上,这表明它们很可能源自实验面包板上湍流和声波引起的快速变化的光程差。

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