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首页> 外文期刊>Journal of Modern Optics >The design of a triplet with a shape-dependent third-order aberration optimization technique
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The design of a triplet with a shape-dependent third-order aberration optimization technique

机译:基于形状的三阶像差优化技术的三重态设计

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摘要

We have derived a series of shape-dependent third-order aberration equations involving lens thickness. These equations are used in a simple and direct method to correct real aberrations and to find the minimum aberration for triple design that has been proposed. These calculated third-order aberrations can exactly meet the target values for each stage by means of the damped least-squares method. The shape of the three elements permits the control of three third-order aberrations: spherical aberration, coma and astigmatism. The spherical aberration is targeted first. The minimal value of the real on-axis aberration is obtained. Similarly, the coma and astigmatism target values are adjusted so as to force the full field angle real off-axis aberrations down to a minimum. Finally, the manual adjustment of the lens thickness and air spacing is used to attain the minimum aberration at the 0.7 field angle. To verify the method, two triplet design examples are presented.
机译:我们已经得出了一系列涉及透镜厚度的形状相关的三阶像差方程。这些方程式可用于简单直接的方法中,以校正实际像差并找到已提出的三重设计的最小像差。通过阻尼最小二乘法,这些计算出的三阶像差可以完全满足每个阶段的目标值。这三个元素的形状允许控制三个三阶像差:球面像差,彗形像差和像散。首先将球差作为目标。获得实际轴上像差的最小值。类似地,调节彗形象差和像散目标值,以将整个视场角实际离轴像差强制降至最低。最后,人工调整透镜的厚度和空气间隔可在0.7视场角处获得最小像差。为了验证该方法,给出了两个三重态设计实例。

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