Mirsky Simcha K, Shaked Natan T
Opt Express. 2019 Sep 16;27(19):26708-26720. doi: 10.1364/OE.27.026708.
It has long been assumed that off-axis holography is less spatial bandwidth efficient than on-axis holography. Six-pack holography (6PH) is the first off-axis configuration that changes this paradigm. We present the first experimental realization of 6PH, an off-axis interferometric system capable of spatially multiplexing six complex wavefronts while using the same number of camera pixels needed for a single off-axis hologram. Each of the six parallel complex wavefronts is encoded using a different fringe orientation and can be fully reconstructed. This technique is especially useful for dynamic samples, as it allows the acquisition of six complex wavefronts simultaneously. There are many applications for the data that can be compressed into the six channels. Here, we utilize 6PH to increase resolution in dynamic synthetic aperture imaging, where each of the six optically compressed off-axis holograms encodes a different spatial frequency range of the imaged sample, yielding 1.62 × resolution enhancement.
长期以来,人们一直认为离轴全息术在空间带宽效率方面低于同轴全息术。六束全息术(6PH)是第一种改变这一范式的离轴配置。我们展示了6PH的首次实验实现,这是一种离轴干涉系统,能够在使用与单个离轴全息图所需相同数量的相机像素的情况下对六个复波前进行空间复用。六个平行复波前中的每一个都使用不同的条纹取向进行编码,并且可以完全重建。该技术对于动态样本特别有用,因为它允许同时采集六个复波前。可以压缩到这六个通道中的数据有许多应用。在这里,我们利用6PH提高动态合成孔径成像的分辨率,其中六个光学压缩离轴全息图中的每一个都对成像样本的不同空间频率范围进行编码,从而实现1.62倍的分辨率增强。