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Object plane detection and phase retrieval from single-shot holograms using multi-wavelength in-line holography

机译:使用多波长在线全息术从单次全息图的对象平面检测和相位检索

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摘要

Phase retrieval and the twin-image problem in digital in-line holographic microscopy can be resolved by iterative reconstruction routines. However, recovering the phase properties of an object in a hologram requires an object plane to be chosen correctly for reconstruction. In this work, we present a novel multi-wavelength iterative algorithm to determine the object plane using single-shot holograms recorded at multiple wavelengths in an in-line holographic microscope. Using micro-sized objects, we verify the object positioning capabilities of the method for various shapes and derive the phase information using synthetic and experimental data. Experimentally, we built a compact digital in-line holographic microscopy setup around a standard optical microscope with a regular RGB-CCD camera and acquired holograms of micro-spheres, E. coli, and red blood cells, which are illuminated using three lasers operating at 491 nm, 532 nm, and 633 nm, respectively. We demonstrate that our method provides accurate object plane detection and phase retrieval under noisy conditions, e.g., using low-contrast holograms with an inhomogeneous background. This method allows for automatic positioning and phase retrieval suitable for holographic particle velocimetry, and object tracking in biophysical or colloidal research. (C) 2018 Optical Society of America
机译:通过迭代重建程序可以解决数字在线全息显微镜中的相位检索和双图像问题。然而,在全息图中恢复对象的相位属性需要正确选择对象平面以进行重建。在这项工作中,我们提出了一种新的多波长迭代算法,用于使用在线全息显微镜中的多个波长记录的单射全息图来确定物体平面。使用微大型对象,我们验证了各种形状的方法的对象定位能力,并使用合成和实验数据导出相位信息。通过实验,我们在标准光学显微镜周围构建了一个紧凑的数字在线全息显微镜设置,具有常规的RGB-CCD摄像头,并采用微型球体,大肠杆菌和红细胞的全息图,使用三个激光器照亮491 nm,532nm和633nm。我们证明我们的方法在嘈杂的条件下提供准确的物体平面检测和相位检索,例如,使用具有不均匀背景的低对比度全息图。该方法允许适用于全息粒子速度的自动定位和相位检索,以及生物物理或胶体研究中的物体跟踪。 (c)2018年光学学会

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