Memmolo Pasquale, Paturzo Melania, Javidi Bahram, Netti Paolo A, Ferraro Pietro
Opt Lett. 2014 Aug 15;39(16):4719-22. doi: 10.1364/OL.39.004719.
Several automatic approaches have been proposed in the past to compute the refocus distance in digital holography (DH). However most of them are based on a maximization or minimization of a suitable amplitude image contrast measure, regarded as a function of the reconstruction distance parameter. Here we show that, by using the sparsity measure coefficient regarded as a refocusing criterion in the holographic reconstruction, it is possible to recover the focus plane and, at the same time, establish the degree of sparsity of digital holograms, when samples of the diffraction Fresnel propagation integral are used as a sparse signal representation. We employ a sparsity measurement coefficient known as Gini's index thus showing for the first time, to the best of our knowledge, its application in DH, as an effective refocusing criterion. Demonstration is provided for different holographic configurations (i.e., lens and lensless apparatus) and for completely different objects (i.e., a thin pure phase microscopic object as an in vitro cell, and macroscopic puppets) preparation.
过去已经提出了几种自动方法来计算数字全息术(DH)中的重新聚焦距离。然而,它们中的大多数基于合适的幅度图像对比度度量的最大化或最小化,该对比度度量被视为重建距离参数的函数。在这里,我们表明,当将衍射菲涅耳传播积分的样本用作稀疏信号表示时,通过使用在全息重建中被视为重新聚焦标准的稀疏性度量系数,可以恢复焦平面,同时确定数字全息图的稀疏程度。我们使用一种称为基尼指数的稀疏性测量系数,据我们所知,这首次展示了其在数字全息术中作为有效重新聚焦标准的应用。针对不同的全息配置(即透镜和无透镜装置)以及完全不同的物体(即作为体外细胞的薄纯相位微观物体和宏观木偶)制备提供了演示。