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0.1THz super-resolution imaging based on 3D printed confocal waveguides

机译:0.1基于3D印刷共焦波导的超级分辨率成像

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摘要

The paper reports a waveguide-based lens-free terahertz (THz) imaging method. It not only inherits the advantages of traditional confocal imaging, but also realizes super-resolution in THz band. The waveguides prepared by a 3D printing and metal-cladding technology can replace the traditional lens to transmit and focus THz wave effectively. For verification, two hollow waveguides (8 mm inner diameter, 60 mm length) were fabricated and a 0.1 THz confocal waveguides imaging system was built. High quality THz images with a minimum resolution of 1.41 mm (less than 1/2 of the wavelength) were obtained by placing the imaging targets at the waveguide's focus and performing two-dimensional scanning. The focusing mechanism and transmission characteristics of THz in the waveguide are simulated and analyzed. The simulations are in agreement with the experiments.
机译:本文报告了一种基于波导的无透镜太赫兹(THz)成像方法。 它不仅继承了传统的共聚焦成像的优势,而且还实现了THz频段的超级分辨率。 通过3D印刷和金属包层技术制备的波导可以取代传统镜头以有效地传输和聚焦波浪。 为了验证,制造两个中空波导(8mm内径,60mm长),建立了0.1 Zhz共焦波导成像系统。 通过将成像靶放置在波导的焦点和执行二维扫描中,获得最小分辨率的高质量THz图像,其最小分辨率为1.41mm(波长小于1/2)获得。 模拟和分析了波导中THz的聚焦机制和传输特性。 模拟与实验一致。

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