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Design of Fresnel lenses and binary-staircase kinoforms of low value of the aperture number

机译:光圈值低的菲涅耳透镜和二元阶梯形偶像的设计

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摘要

The design of plane Fresnel zone plates, and binary-staircase kinoforms, has been analyzed in this paper for a non-imaging application aimed to increase the performance of point-like detectors. They maximize the irradiance at the focal point of the diffractive element maintaining some constrains in the lateral size of the element. The design of the binary-staircase kinoform has been described as an iterative process. Some interesting results have been obtained for the values of the relative aperture number, or F/#. The practical case treated here produces elements with very low F/#. The results shows that the gain of the irradiance at the focal point increases with the focal distance of the binary-staircase kinoform, and decreases with the focal length for a plane Fresnel zone plate having a limited lateral size. The calculation of the width of the irradiance distribution makes it possible to select those solutions that best concentrate the irradiance on the focal plane. (c) 2005 Elsevier B.V. All rights reserved.
机译:本文针对非成像应用(旨在提高点状检测器的性能)分析了平面菲涅耳波带片和二元阶梯形Kinoform的设计。它们最大化了衍射元件焦点处的辐照度,从而在元件的横向尺寸上保持了一些约束。二元阶梯形kinoform的设计已被描述为一个迭代过程。对于相对孔径数或F /#的值,已经获得了一些有趣的结果。此处处理的实际情况产生的F /#非常低。结果表明,对于具有有限的横向尺寸的平面菲涅耳波带片,焦点处的辐照度增益随二元阶梯形kinoform的焦距而增大,而随焦距的减小而减小。辐照度分布宽度的计算使得可以选择最能将辐照度集中在焦平面上的那些解决方案。 (c)2005 Elsevier B.V.保留所有权利。

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