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Multi-kW Coherent Combining of Fiber Lasers Seeded with Pseudo Random Phase Modulated Light

机译:用伪随机相位调制光接种纤维激光器的多kW相干组合

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We report efficient coherent beam combining of five kilowatt-class fiber amplifiers with a diffractive optical element (DOE). Based on a master oscillator power amplifier (MOPA) configuration, the amplifiers were seeded with pseudo random phase modulated light. Each non-polarization maintaining fiber amplifier was optically path length matched and provides approximately 1.2 kW of near diffraction-limited output power (measured M~2<1.1). Consequently, a low power sample of each laser was utilized for active linear polarization control. A low power sample of the combined beam after the DOE provided an error signal for active phase locking which was performed via Locking of Optical Coherence by Single-Detector Electronic-Frequency Tagging (LOCSET). After phase stabilization, the beams were coherently combined via the 1x5 DOE. A total combined output power of 4.9 kW was achieved with 82% combining efficiency and excellent beam quality (M~2<1.1). The intrinsic DOE splitter loss was 5%. Similarly, losses due in part to non-ideal polarization, ASE content, uncorrelated wavefront errors, and misalignment errors contributed to the efficiency reduction.
机译:我们报告了具有衍射光学元件(DOE)的五千瓦级光纤放大器的高效相干光束组合。基于主振荡器功率放大器(MOPA)配置,通过伪随机相位调制光接种放大器。每个非极化保持光纤放大器是光学路径长度匹配的,并且提供大约1.2kW的近衍射限制输出功率(测量M〜2 <1.1)。因此,每个激光器的低功率样本用于有源线性偏振控制。组合光束的低功率样本在携带件之后,通过单检测器电子频率标记(LOCSET)通过锁定光学相干来执行误差信号。在相稳定后,通过1×5母频相干梁。通过82%的组合效率和优异的光束质量(M〜2 <1.1)实现了4.9kW的总组合输出功率。内在的DOE分离器损失为5%。类似地,部分到非理想极化,ASE内容,不相关的波前误差和未对准误差的损失导致效率降低。

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