Opt Express. 2022 Aug 1;30(16):29234-29245. doi: 10.1364/OE.444616.
In this manuscript, we describe the development of a single shot, self-referencing wavefront division, multiplexing digital holographic microscope employing LED sources for large field of view quantitative phase imaging of biological samples. To address the difficulties arising while performing interferometry with low temporally coherent sources, an optical arrangement utilizing multiple Fresnel Biprisms is used for hologram multiplexing, enhancing the field of view and increasing the signal to noise ratio. Biprisms offers the ease of obtaining interference patterns by automatically matching the path length between the two off-axis beams. The use of low temporally coherent sources reduces the speckle noise and the cost, and the form factor of the setup. The developed technique was implemented using both visible and UV LEDs and tested on polystyrene microspheres and human erythrocytes.
在本文中,我们描述了一种单镜头、自参考波前分光、复用数字全息显微镜的开发,该显微镜采用 LED 光源,可对生物样本进行大视场定量相衬成像。为了解决在使用低时间相干光源进行干涉测量时出现的问题,我们采用了一种利用多个菲涅尔双棱镜的光学布置来进行全息图复用,从而提高了视场和信噪比。双棱镜通过自动匹配两个离轴光束之间的光程,提供了获取干涉图案的简便方法。低时间相干光源的使用降低了散斑噪声和成本,同时也减小了系统的外形尺寸。我们使用可见和紫外 LED 实现了这项技术,并在聚苯乙烯微球和人红细胞上进行了测试。