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Analysis of optical field distribution of the super-Gaussian beam passing through continuous phase plate

机译:穿过连续相位板的超高斯光束的光场分布分析

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The design and manufacure of Continuous Phase Plate(CPP) with a large aperture is very significant and useful to the Inertial Confinement Fusion(ICF) and some physical experiment related due to its several advantages such as high energy availability ratio and easily controllable focal spot's profile. Various processing errors will be inevitably introduced for the limitation of the fabrication technique and hence produce aberrated laser wavefront, which is very influential for the process of beam's propagation and focusing. In this paper we numerically simulate and compare the optical filed distributions of phase-aberrated super-Gaussian beam passing through both designed and manufactured CPP with a large aperture and deep phase. The simulation results prove the CPP's beam smoothing performance and high tolerance of the super-Gaussian beam's far-field focal plane intensity distributions,which has been added by the random phase screen, furthermore, the modulation influence of intermediate frequency phase error to the near-field light intensity distribution has also been simulated and proved, from which we can improve the fabrication technique and optimize the design method.
机译:大孔径连续相板(CPP)的设计和制造对惯性约束聚变(ICF)以及与之相关的一些物理实验非常重要,因为它具有高能量利用率和易于控制的焦点轮廓等优点。 。由于制造技术的局限性,不可避免地会引入各种加工误差,从而产生畸变的激光波前,这对光束的传播和聚焦过程有很大的影响。在本文中,我们数值模拟和比较了通过设计和制造的具有大孔径和深相位的CPP的相差像差超高斯光束的光学场分布。仿真结果证明了CPP的光束平滑性能和超高斯光束远场焦平面强度分布的高容忍度,这是通过随机相位屏蔽添加的,此外,中频相位误差的调制影响了近场光。还对场强分布进行了仿真和验证,从中可以改进制造工艺并优化设计方法。

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