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Beam quality analysis and optimization for 10 kW-level spectral beam combination system

机译:光束质量分析和优化10千瓦级谱梁组合系统

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摘要

Filter-based spectral beam combining provides a promising approach for power scaling and brightness enhancement, especially for broad-linewidth fiber lasers. In this paper, we have demonstrated the beam combining experiments of two high power broad-linewidth fiber lasers using an edge filter as the combining element and achieved 10.25 kW combined power with an efficiency of 97%. Due to the thermal lens effect, the combined beam quality shows obvious signs of deterioration, which occurs in all cases of high power spectral beam combination system, including grating-based and prism-based schemes. The surface deformation and the thermal behavior are monitored in real-time so as to research the mechanism of the combined beam quality deterioration during the combining process. The primary reason for the decline of beam quality could be attributed to the thermal induced change in the refractive index, which not only results in an inhomogeneous wave-front aberration but causes the different focal waists of the incident channels. To counterbalance these aberrations, an air-cooling device and a passively thermally compensated optical system based on CaF2 windows are integrated into the system. In this case, the thermal lensing effect is minimized and the beam quality deterioration factor (BQD) of the combined output beam has been improved 52% in horizontal direction and 101% in vertical direction, showing the great potential of the filter-based approach to achieve a combined beam with high power and excellent beam quality.
机译:基于滤波器的光谱光束组合提供了一种充满电力缩放和亮度增强的有希望的方法,尤其是对于宽线宽光纤激光器。在本文中,我们已经证明了使用边缘滤光器作为组合元件的两个高功率宽线宽纤维激光器的光束组合实验,并达到了10.25kW的效率,效率为97%。由于热透镜效应,组合光束质量显示出明显的劣化迹象,其在所有高功率谱梁组合系统中发生,包括基于光栅和基于棱镜的方案。实时监测表面变形和热行为,以便在组合过程中研究组合光束质量劣化的机制。光束质量下降的主要原因可能归因于折射率的热诱导变化,这不仅导致了不均匀的波前像差,而且导致入射道的不同焦距腰部。为了抵消这些像差,基于CAF2窗口的空气冷却装置和被动热补偿的光学系统被集成到系统中。在这种情况下,最小化热透镜效果,并且组合输出光束的光束质量劣化因子(BQD)在水平方向上提高了52%,垂直方向101%,显示了基于滤波器的方法的巨大潜力实现具有高功率和优良光束质量的组合光束。

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