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首页> 外文期刊>Optics and Lasers in Engineering >Sizing calibration in digital lensless holographic microscopy via iterative Talbot self-imaging
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Sizing calibration in digital lensless holographic microscopy via iterative Talbot self-imaging

机译:通过迭代Talbot自成像在数字透镜全息显微镜中校准校准

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摘要

In this work, an iterative method to calibrate the length measurements in digital lensless holographic microscopy (DLHM) is presented. In DLHM, the correct sizing is controlled by the accurate knowledge of the illumination wavelength, the digital camera specifications, and the source-to-screen distance. While the two formers are provided by the manufacturers, the latter has to be somehow measured, usually by mechanical means. As an alternative for performing that key measurement in DLHM, the Talbot self-imaging effect, and hence the Talbot distance, is used as a measurement tool in this work. Amplitude reconstructions of a monolayer of self-organized spheres of polystyrene produce the self-imaging phenomenon, with the Talbot distance controlled by the illuminating wavelength, the reconstruction distance, and the period of the monolayer. As the latter can be varied in DLHM by changing the source-to-screen distance while keeping fixed the wavelength and the camera specifications, the source-to-screen distance is iteratively varied until the correct Talbot distance is found. The proposed method has the advantages of i) increased sensitivity because of the axial quadratic dependency on transversal measurements, ii) not requiring in-focus images that demand the use of focusing criteria, and iii) can use non-approximated propagation methods to produce axial intensity profiles to determine the correct source-to-screen distance. The feasibility of the calibration method is tested by reconstructing a USAF 1951 test of resolution.
机译:在这项工作中,提出了一种校准数字透镜全息显微镜(DLHM)中长度测量的迭代方法。在DLHM中,通过对照明波长,数码相机规格和源距离距离的准确知识来控制正确的尺寸。虽然两种成形机由制造商提供,但后者必须以某种方式测量,通常通过机械手段来测量。作为在DLHM中执行该键测量的替代方案,塔塔尔自成像效果,因此塔图距离,用作这项工作中的测量工具。聚苯乙烯的单层重建聚苯乙烯的单层重建产生自成像现象,其由照明波长,重建距离和单层的周期控制的塔图距离。由于后者通过在保持源屏距离在保持固定波长和相机规格的同时,可以在DLHM中变化,因此源到屏幕距离迭代地变化,直到找到正确的塔塔距离。所提出的方法具有I)的优点,因为横向测量的轴向二次依赖性,II)不需要焦点图像,要求使用聚焦标准和III)可以使用非近似的传播方法产生轴向强度配置文件以确定正确的源到屏幕距离。通过重建USAF 1951的分辨率测试来测试校准方法的可行性。

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