Stone T, George N
Appl Opt. 1988 Jul 15;27(14):2960-71. doi: 10.1364/AO.27.002960.
Hybrid elements containing optical power with both diffractive (holographic) and refractive components are shown to be useful for obtaining arbitrary or, in special cases, achromatic dispersive characteristics. In one configuration a volume holographic element is coated on the surface of a crown glass lens, and by varying the power distributions among the refractive and holographic components while maintaining constant overall optical power the effective Abbe V numbers of the resultant hybrid element are shown to span all real numbers excepting a narrow interval around zero. In the achromat case (V number = infinity), both refractive and diffractive components are of the same sign resulting in much smaller glass curvatures than in all-refractive achromat doublets or apochromat triplets. The large separation between holographic partial dispersions and available glass partial dispersions is shown to lead to hybrid three-color achromats with greatly reduced glass curvatures. Applications are expected to include broadband achromatic objectives and chromatic aberration corrector plates in high performance optical systems. Such corrector plates may have any net power (including zero) while exhibiting effective V numbers that are positive or negative and that span a wide range, e.g., +/-1 or +/-1000. Further advantages include reducing the need for choosing high dispersion glasses, which may be costly and difficult to grind or polish. High diffraction efficiency and broad spectral bandwidths (in excess of 3000 A) are obtained in the holographic optical elements using single-element central-stop and cascaded element designs.
含有同时具有衍射(全息)和折射成分的光功率的混合元件,被证明对于获得任意的或在特殊情况下的消色差色散特性是有用的。在一种配置中,体全息元件被涂覆在冕牌玻璃透镜的表面上,并且通过在保持总光功率恒定的同时改变折射和全息成分之间的功率分布,结果表明所得混合元件的有效阿贝V数跨越除零附近的一个窄区间之外的所有实数。在消色差情况(V数=无穷大)下,折射和衍射成分具有相同的符号,导致玻璃曲率比全折射消色差双合透镜或复消色差三合透镜小得多。全息部分色散与可用玻璃部分色散之间的大分离被证明会导致具有大大减小的玻璃曲率的混合三色消色差透镜。预期应用包括高性能光学系统中的宽带消色差物镜和色差校正板。这种校正板可以具有任何净光焦度(包括零),同时呈现正或负的有效V数,并且跨越很宽的范围,例如,+/-1或+/-1000。进一步的优点包括减少对选择高色散玻璃的需求,高色散玻璃可能成本高昂且难以研磨或抛光。在全息光学元件中使用单元素中心光阑和级联元件设计可获得高衍射效率和宽光谱带宽(超过3000埃)。