Principles and techniques of digital holographic microscopy

Spie Reviews Pub Date : 2010-04-01 DOI:10.1117/6.0000006
Myung K. Kim
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引用次数: 642

Abstract

Digital holography is an emerging field of new paradigm in general imaging applications. We present a review of a subset of the research and development activities in digital holography, with emphasis on microscopy techniques and applications. First, the basic results from the general theory of holography, based on the scalar diffraction theory, are summarized, and a general description of the digital holographic microscopy process is given, including quantitative phase microscopy. Several numerical diffraction methods are described and compared, and a number of representative configurations used in digital holography are described, including off-axis Fresnel, Fourier, image plane, in-line, Gabor, and phase-shifting digital holographies. Then we survey numerical techniques that give rise to unique capabilities of digital holography, including suppression of dc and twin image terms, pixel resolution control, optical phase unwrapping, aberration compensation, and others. A survey is also given of representative application areas, including biomedical microscopy, particle field holography, micrometrology, and holographic tomography, as well as some of the special techniques, such as holography of total internal reflection, optical scanning holography, digital interference holography, and heterodyne holography. The review is intended for students and new researchers interested in developing new techniques and exploring new applications of digital holography.
数字全息显微术的原理和技术
数字全息术是一个新兴的领域,在一般成像应用的新范式。我们提出了一个子集的研究和发展活动的数字全息,重点是显微镜技术和应用的审查。首先,总结了基于标量衍射理论的全息一般理论的基本结果,并对数字全息显微过程进行了一般描述,包括定量相位显微。描述和比较了几种数值衍射方法,并描述了数字全息中使用的一些代表性配置,包括离轴菲涅耳,傅里叶,图像平面,在线,Gabor和相移数字全息。然后,我们研究了数字全息技术的独特功能,包括抑制直流和双图像项,像素分辨率控制,光学相位展开,像差补偿等。介绍了生物医学显微术、粒子场全息术、显微测量术、全息层析术等具有代表性的应用领域,以及一些特殊技术,如全内反射全息术、光学扫描全息术、数字干涉全息术和外差全息术。本综述面向对数字全息新技术的开发和新应用感兴趣的学生和新研究人员。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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