Single beam computational 3D microscopy

A. Anand, B. Javidi
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引用次数: 1

Abstract

Three dimensional microscopy allows the reconstruction of both phase and amplitude of the object wavefronts. This in turn sheds information on the optical path length profile of the object. Conventionally 3D microscopy is achieved using two beam interference techniques, which requires adjustment of the beam for high quality interference fringes as well as is more prone to external vibrations. Here we discuss a single beam 3D microscopic technique. The technique works by sampling the volume speckle field generated by putting a diffuser in the path of the probe beam passing through the object at several axial planes and computing the complex amplitude of the object wavefront using angular spectrum approach towards scalar diffraction theory.
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单光束计算三维显微镜
三维显微镜可以重建物体波前的相位和振幅。这反过来又揭示了物体光路长度轮廓的信息。传统的3D显微镜是使用两束干涉技术实现的,这需要调整光束以获得高质量的干涉条纹,并且更容易受到外部振动。本文讨论了单光束三维显微技术。该技术的工作原理是,在探针光束穿过物体的路径上,在几个轴向平面上放置一个扩散器,对其产生的体积散斑场进行采样,并利用标量衍射理论的角谱方法计算物体波前的复振幅。
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3D wave field reconstruction from intensity-only data: Variational inverse imaging techniques Regularized reconstruction of irregularly sampled scalar light fields About methods of estimating the correlation properties of circularly-polarized and linearly-polarized plane waves On feasibilities of the use of spatial polarization modulation for estimating coherence of optical fields Temporal double- and triple-intensity correlation imaging with classical light
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