Communications and Optoelectronic Research Centre, SFI Strategic Research Cluster in Solar Energy Conversion, School of Electrical, Electronic and Mechanical Engineering, College of Engineering, Mathematical and Physical Sciences, University College Dublin, Belfield, Dublin 4, Ireland.
Opt Lett. 2010 Sep 15;35(18):3018-20. doi: 10.1364/OL.35.003018.
Access to the spatial derivatives of an optical wave field can be used to enhance edge detection, focusing, and holographic imaging. It was recently shown that, by using digital holographic techniques, the Laplacian of an object field can be extracted. Here it is demonstrated that equivalent results can be found using two holograms captured at either two distances or with two appropriately related wavelengths. Experimental and numerical results confirming the theoretical analyses are presented. The proposed two-wavelength-based system requires no mechanical repositioning of the object and is shown to provide superior performance.
获取光场的空间导数可用于增强边缘检测、聚焦和全息成像。最近已经证明,可以使用数字全息技术提取物体场的拉普拉斯。本文演示了通过在两个不同距离处拍摄两个全息图或使用两个具有适当相关波长的全息图,也可以获得等效的结果。本文给出了实验和数值结果以验证理论分析。所提出的基于两波长的系统不需要对物体进行机械重新定位,并且显示出优异的性能。