Inoue Kotaro, Anand Arun, Cho Myungjin
Opt Lett. 2021 Mar 15;46(6):1470-1473. doi: 10.1364/OL.416002.
Digital holographic microscopy (DHM) is a future three-dimensional (3D) microscopy due to its high-resolution and high-precision 3D images. Thus, it is getting attention in bioinformatics, semiconductor defect detection, etc. However, some limitations still exist. Especially, high-speed holographic imaging requires high-power lasers, which are difficult to image on highly absorbent or light-sensitive samples. To overcome these issues, we propose a new, to the best of our knowledge, digital hologram recovery algorithm called angular spectrum matching (ASM), which achieves hologram imitation to recover holograms in digital holography at low light intensities. The hologram used for the background phase comparison is recorded without objects; thus, no power limitation is required. The ASM utilizes this background hologram to recover dark holograms. We present experimental results showing improved DHM numerical reconstructions and recovered holograms under extremely low light conditions.
数字全息显微镜(DHM)因其能够生成高分辨率和高精度的三维(3D)图像,而成为未来的三维显微镜技术。因此,它在生物信息学、半导体缺陷检测等领域受到关注。然而,它仍然存在一些局限性。特别是,高速全息成像需要高功率激光器,这对于高吸收性或光敏感样本来说难以进行成像。为了克服这些问题,据我们所知,我们提出了一种新的数字全息图恢复算法,称为角谱匹配(ASM),它能够在低光强度下实现全息图模拟,以恢复数字全息术中的全息图。用于背景相位比较的全息图是在没有物体的情况下记录的;因此,无需功率限制。ASM利用这个背景全息图来恢复暗全息图。我们展示的实验结果表明,在极低光照条件下,DHM的数值重建和恢复的全息图都得到了改进。