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Calculation of the diffraction efficiency on concave gratings based on Fresnel-Kirchhoff's diffraction formula

机译:基于Fresnel-Kirchhoff衍射公式的凹面光栅衍射效率计算

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Fraunhofer diffraction formula cannot be applied to calculate the diffraction wave energy distribution of concave gratings like plane gratings because their grooves are distributed on a concave spherical surface. In this paper, a method based on the Kirchhoff diffraction theory is proposed to calculate the diffraction efficiency on concave gratings by considering the curvature of the whole concave spherical surface. According to this approach, each groove surface is divided into several limited small planes, on which the Kirchhoff diffraction field distribution is calculated, and then the diffraction field of whole concave grating can be obtained by superimposition. Formulas to calculate the diffraction efficiency of Rowland-type and flat-field concave gratings are deduced from practical applications. Experimental results showed strong agreement with theoretical computations. With the proposed method, light energy can be optimized to the expected diffraction wave range while implementing aberration-corrected design of concave gratings, particularly for the concave blazed gratings.
机译:Fraunhofer衍射公式无法像平面光栅一样用于计算凹面光栅的衍射波能量分布,因为它们的凹槽分布在凹面球面上。本文提出一种基于基尔霍夫衍射理论的方法,通过考虑整个凹球面的曲率来计算凹面光栅的衍射效率。根据这种方法,将每个凹槽表面划分为几个有限的小平面,在其上计算基尔霍夫衍射场分布,然后可以通过叠加获得整个凹面光栅的衍射场。从实际应用推导了计算罗兰型和平场凹面光栅衍射效率的公式。实验结果与理论计算结果非常吻合。利用所提出的方法,可以在实现凹面光栅的像差校正设计的同时,特别是对于凹面闪耀光栅,将光能优化到预期的衍射波范围。

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