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Theoretical Explanation of the Polarization-Converting System Achieved by Beam Shaping and Combination Technique and Its Performance Under High Power Conditions

机译:光束整形和组合技术实现的偏振转换系统的理论解释及其在大功率条件下的性能

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The fiber laser has very obvious advantages and broad applications compared with the traditional solid laser. But influenced by heat effect of gain medium, nonlinear effect, stress birefringence effect and other negative factors, it's very difficult to get high power linearly polarized laser just using a single laser. For these limitations a polarization-converting system is designed using beam shaping and combination technique which is able to transform naturally polarized laser to linearly polarized laser at real time in this paper. The principle of the Gaussian beam changing into the hollow beam passing through two axicons and the combination of the Gaussian beam and the hollow beam is discussed. In the experimental verification the energy conversion efficiency reached 93.1% with a remarkable enhancement of the extinction ratio from 3% to 98% benefited from the high conversion efficiency of axicons and the system worked fine under high power conditions. The system also kept excellent far field divergence. The experiment phenomenon also agreed with the simulation quite well.
机译:与传统的固体激光器相比,光纤激光器具有非常明显的优势和广泛的应用前景。但是受增益介质的热效应,非线性效应,应力双折射效应和其他负面因素的影响,仅使用单个激光器很难获得高功率线性偏振激光器。针对这些限制,本文设计了一种利用光束整形和组合技术的偏振转换系统,该系统能够将自然偏振激光实时转换为线性偏振激光。讨论了高斯光束通过两个轴锥变成空心光束的原理,以及高斯光束和空心光束的组合。在实验验证中,得益于轴锥的高转换效率,系统的能量转换效率达到了93.1%,消光比从3%显着提高到98%,并且该系统在高功率条件下运行良好。该系统还保持了出色的远场发散度。实验现象也与仿真非常吻合。

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