首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Simultaneous high-resolution and wide-field microscopy with improved image sharpness using pseudo-thermal light source and Fourier Ptychography
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Simultaneous high-resolution and wide-field microscopy with improved image sharpness using pseudo-thermal light source and Fourier Ptychography

机译:使用伪热光源和傅里叶PTYCHOGAL改善图像清晰度的同时高分辨率和宽场显微镜

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摘要

Lasers have been widely used in areas such as interferometry, imaging, holography, projection displays, etc. as they provide the benefit of high spatio-temporal coherence and high brightness along with the formation of speckles. High spatio-temporal coherence is a remarkable property of laser due to which interferometry and holography can be easily implemented, but the occurrence of spurious fringes due to multiple reflections and the formation of speckles reduces the quality of images in laser-based systems. Here, we present the implementation of Fourier Ptychography using pseudo-thermal light source. The spatial and temporal coherence properties of laser light have been reduced using a static and rotating diffuser leading to the implementation of pseudo thermal light source. The use of pseudo-thermal source leads to an increase in image sharpness and decrease in speckle contrast thus acting as a suitable source for imaging. The improvement in experimental results suggests that both high temporal coherence and low spatial coherence is necessary for high contrast imaging with improvement in spatial resolution. The pseudo-thermal light source acts as a solution to non-uniform illumination with higher sharpness and higher brightness compared to spatially and temporally incoherent LED array light source. Experiments have been carried out on biological samples to prove the effect.
机译:激光器已广泛用于干涉测量,成像,全息术,投影显示等领域,因为它们提供了高时空相干性和高亮度以及形成斑点的效益。高时空相干性是激光的一个显着的性质是由于其干涉和全息能够容易地实现,但伪条纹由于多次反射的发生和斑点的形成降低了基于激光的系统的图像的质量。在这里,我们使用伪热光源呈现傅立叶PTYChography的实现。使用静态和旋转扩散器的激光的空间和时间相干性能降低,导致伪热光源的实现。伪热源的使用导致图像清晰度的增加,并且散斑对比度的降低,从而充当用于成像的合适源。实验结果的改善表明,高对比度成像具有高对比度成像的高对比度成像,其空间分辨率的改善是必要的。与空间和时间相连的LED阵列光源相比,伪热光源作为具有更高锐度和更高亮度的不均匀照明的溶液。在生物样品上进行了实验以证明其效果。

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