Carcolé E, Campos J, Bosch S
Appl Opt. 1994 Jan 10;33(2):162-74. doi: 10.1364/AO.33.000162.
A mathematical model that describes the behavior of low-resolution Fresnel lenses encoded in any low-resolution device (e.g., a spatial light modulator) is developed. The effects of low-resolution codification, such the appearance of new secondary lenses, are studied for a general case. General expressions for the phase of these lenses are developed, showing that each lens behaves as if it were encoded through all pixels of the low-resolution device. Simple expressions for the light distribution in the focal plane and its dependence on the encoded focal length are developed and commented on in detail. For a given codification device an optimum focal length is found for best lens performance. An optimization method for codification of a single lens with a short focal length is proposed.
开发了一种数学模型,该模型描述了在任何低分辨率设备(例如空间光调制器)中编码的低分辨率菲涅耳透镜的行为。针对一般情况,研究了低分辨率编码的影响,如新出现的次级透镜的情况。推导了这些透镜相位的一般表达式,表明每个透镜的行为就好像它是通过低分辨率设备的所有像素进行编码的一样。详细推导并评论了焦平面上光分布的简单表达式及其对编码焦距的依赖性。对于给定的编码设备,找到了实现最佳透镜性能的最佳焦距。提出了一种对短焦距单透镜进行编码的优化方法。