Rossi M, Kunz R E, Herzig H P
Appl Opt. 1995 Sep 10;34(26):5996-6007. doi: 10.1364/AO.34.005996.
The refractive and the diffractive properties of planar micro-optical elements are investigated. The transition between purely refractive and purely diffractive planar microlenses is numerically simulated for the example of differently designed phase-matched Fresnel elements. Results obtained from numerical simulations and experiments show that the refractive and diffractive types exhibit a distinctly different behavior in the presence of small fabrication errors or wavelength deviations. Based on these results, design rules for various applications, including low- and high-numerical-aperture lenses and hybrid refractive-diffractive elements, are derived. For a high-numerical-aperture (ƒ /# = 1.0) lens the experimental characterization of the irradiance distribution in the image space is presented and shown to agree well with theoretical predictions.
研究了平面微光学元件的折射和衍射特性。以不同设计的相位匹配菲涅耳元件为例,对纯折射和纯衍射平面微透镜之间的转变进行了数值模拟。数值模拟和实验结果表明,在存在小的制造误差或波长偏差的情况下,折射型和衍射型表现出明显不同的行为。基于这些结果,推导了包括低数值孔径和高数值孔径透镜以及混合折射-衍射元件在内的各种应用的设计规则。对于高数值孔径(ƒ /# = 1.0)透镜,给出了像空间中辐照度分布的实验表征,并表明与理论预测吻合良好。