DOEs for color correction in broad band optical systems: validity and limits of efficiency approximations

M. Seesselberg, B. Kleemann
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引用次数: 8

Abstract

Diffractive optical elements (DOE) are well-suited for the correction of longitudinal and transverse chromatic aberrations in broadband optical systems such as photographic lenses, HMDs or infrared lenses. Unfortunately, the diffraction efficiency η for the working order of DOEs is often clearly below 100% which causes stray light from unwanted diffraction orders and prevents a more frequent use of DOEs in practice. The main reasons for the decrease of diffraction efficiency η are spectral bandwidth, variation of the incidence angle of impinging light and manufacturing errors of the DOE. In the present paper, several scalar approximations for the diffraction efficiency η as a function of these parameters are compared with rigorous electromagnetic calculations. The validity of these formulae are shown to extend over a surprisingly large range of parameters.
宽频带光学系统的色彩校正:效率近似的有效性和限制
衍射光学元件(DOE)非常适合在宽带光学系统,如摄影镜头,头显或红外镜头的纵向和横向色差的校正。遗憾的是,do的工作级的衍射效率η通常明显低于100%,这导致了不需要的衍射级的杂散光,从而阻碍了do在实践中的更频繁使用。衍射效率η降低的主要原因是光谱带宽、入射光入射角的变化和DOE的制造误差。本文将衍射效率η作为这些参数函数的几个标量近似与严格的电磁计算进行了比较。这些公式的有效性被证明可以扩展到一个大得惊人的参数范围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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