Koukourakis Nektarios, Jaedicke Volker, Adinda-Ougba Adamou, Goebel Sebastian, Wiethoff Helge, Höpfner Henning, Gerhardt Nils C, Hofmann Martin R
Photonics and Terahertz-Technology, Ruhr-University Bochum, Universitätsstr 150,44801 Bochum, Germany.
Opt Express. 2012 Sep 24;20(20):22636-48. doi: 10.1364/OE.20.022636.
We introduce depth-filtered digital holography (DFDH) as a method for quantitative tomographic phase imaging of buried layers in multilayer samples. The procedure is based on the acquisition of multiple holograms for different wavelengths. Analyzing the intensity over wavelength pixel wise and using an inverse Fourier transform leads to a depth-profile of the multilayered sample. Applying a windowed Fourier transform with a narrow window, we choose a depth-of interest (DOI) which is used to synthesize filtered interference patterns that just contain information of this limited depth. We use the angular spectrum method to introduce an additional spatial filtering and to reconstruct the corresponding holograms. After a short theoretical framework we show experimental proof-of-principle results for the method.
我们引入深度滤波数字全息术(DFDH)作为一种对多层样品中埋藏层进行定量层析相成像的方法。该过程基于获取不同波长的多个全息图。逐像素分析波长上的强度并使用逆傅里叶变换可得到多层样品的深度剖面图。应用具有窄窗口的加窗傅里叶变换,我们选择一个感兴趣深度(DOI),用于合成仅包含此有限深度信息的滤波干涉图样。我们使用角谱方法引入额外的空间滤波并重建相应的全息图。在简短的理论框架之后,我们展示了该方法的实验原理验证结果。