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Phaseless computational ghost imaging at microwave frequencies using a dynamic metasurface aperture

机译:使用动态元曲面光圈的微波频率下释放计算Ghost成像

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We demonstrate a dynamic metasurface aperture as a unique tool for computational ghost imaging at microwave frequencies. The aperture consists of a microstrip waveguide loaded with an array of metamaterial elements, each of which couples energy from the waveguide mode to the radiation field. With a tuning mechanism introduced into each independently addressable metamaterial element, the aperture can produce diverse radiation patterns that vary as a function of tuning state. Here, we show that fields from such an aperture approximately obey speckle statistics in the radiative near field. Inspired by the analogy with optical correlation imaging, we use the dynamic aperture as a means of illuminating a scene with structured microwave radiation, receiving the back-scattered intensity with a simple waveguide probe. By correlating the magnitude of the received signal with the structured intensity patterns, we demonstrate high-fidelity, phaseless imaging of sparse targets. The dynamic metasurface aperture as a novel ghost imaging structure can find application in security screening, through-wall imaging, as well as biomedical diagnostics. (c) 2018 Optical Society of America
机译:我们展示了动态元表面光圈,作为微波频率下的计算鬼映像的独特工具。孔径由装载有一系列超材料阵列的微带波导组成,每个元素阵列从波导模式耦合到辐射场。通过引入每个可独立可寻址的超材料元件的调谐机构,孔可以产生各种辐射图案,其随着调谐状态而变化。在这里,我们展示了这种孔径从这种孔径的领域大约遵守辐射近场的斑点统计。灵感来自与光学相关成像的类比,我们使用动态孔径作为照射具有结构化微波辐射的场景的装置,通过简单的波导探针接收背部散射强度。通过将接收信号与结构强度模式的大小相关联,我们展示了高保真,疏忽靶向的释放成像。动态元表面光圈作为新型鬼成像结构,可以在安全筛选,穿越壁成像以及生物医学诊断中找到应用。 (c)2018年光学学会

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