论文标题

通过单像素检测器对复杂对象的定量成像

Quantitative imaging for complex-objects via a single-pixel detector

论文作者

Li, Xianye, sun, Yafei, He, Yikang, Li, Xun, Sun, Baoqing

论文摘要

定量相成像(QPI)在许多应用中很重要,例如显微镜和晶体学。为了定量揭示相位信息,人们可以采用干扰将相位分布映射到强度条纹中,或者通过相检索算法分析仅强度的衍射模式。传统上,这两种方法都使用像素化检测器。在这项工作中,据报道,新型QPI方案受单像素摄像机(SPC)的启发,该方案采用了SPC原理,该原理通过结构化照明和相应的单像素信号来检索图像。特别是对于复杂值的成像,在相域中执行结构化照明,而传感器尺寸限制的点检测器检测到零频率区域的强度。基于照明结构和点信号,通过运行相位检索算法重建复杂的图像。对于各种波长,这种方法是通用的,并且不需要目标的先验信息。模拟和实验都表明,即使对物体处于极端粗糙的相分布,我们的单像素QPI方案也表现出色。

Quantitative phase imaging (QPI) is important in many applications such as microscopy and crystallography. To quantitatively reveal phase information, people could either employ interference to map phase distribution into intensity fringes, or analyze intensity-only diffraction patterns through phase retrieval algorithms. Traditionally, both of these two ways use pixelated detectors. In this work, a novel QPI scheme is reported inspired by single-pixel camera (SPC), which adopts the principle of SPC that retrieves images through structured illumination and corresponding single-pixel signals. Particularly for complex-valued imaging, the structured illumination is performed in the phase domain, and a point detector with restricted sensor size detects the intensity of zero-frequency area. Based on the illumination structures and point signals, a complex image is reconstructed by running a phase retrieval algorithm. This approach is universal for various wavelengths, and needs no a priori information of the targets. Both simulation and experiment show that our single-pixel QPI scheme exhibits great performance even with objects in an extremely rough phase distribution.

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