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使用连续波太赫兹叠层成像术的多层全场相位成像

Multi-layered full-field phase imaging using continuous-wave terahertz ptychography.

作者信息

Wang Dayong, Li Bing, Rong Lu, Tan Fangrui, Healy John J, Zhao Jie, Wang Yunxin

出版信息

Opt Lett. 2020 Mar 15;45(6):1391-1394. doi: 10.1364/OL.384589.

Abstract

Due to the unique properties of terahertz (THz) waves, THz phase imaging has been widely investigated to retrieve the absorption and phase modulation of dielectric two-dimensional thin samples, as well as multiple stacked samples. In this Letter, we apply the three-dimensional ptychographic iterative engine algorithm for continuous-wave THz full-field multi-layered phase imaging. The complex-valued transmission function of two-layered polypropylene thin plates and the corresponding probe function are reconstructed, respectively, which are immune to crosstalk of different layers. The phenomenon of the field-of-view enlargement at the second object layer is observed. This lensless compact imaging method can be potentially used for THz three-dimensional imaging.

摘要

由于太赫兹(THz)波的独特性质,太赫兹相位成像已被广泛研究,用于获取介电二维薄样品以及多个堆叠样品的吸收和相位调制信息。在本信函中,我们将三维叠层迭代引擎算法应用于连续波太赫兹全场多层相位成像。分别重建了两层聚丙烯薄板的复值传输函数和相应的探测函数,它们不受不同层之间串扰的影响。观察到在第二个物体层出现视场扩大的现象。这种无透镜紧凑成像方法有望用于太赫兹三维成像。

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