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A subwavelength resolution microwave/6.3 GHz camera based on a metamaterial absorber

机译:基于超材料吸收体的亚波长分辨率微波/6.3 GHz摄像机

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摘要

The design, fabrication and characterization of a novel metamaterial absorber based camera with subwavelength spatial resolution are investigated. The proposed camera is featured with simple and lightweight design, easy portability, low cost, high resolution and sensitivity, and minimal image interference or distortion to the original field distribution. The imaging capability of the proposed camera was characterized in both near field and far field ranges. The experimental and simulated near field images both reveal that the camera produces qualitatively accurate images with negligible distortion to the original field distribution. The far field demonstration was done by coupling the designed camera with a microwave convex lens. The far field results further demonstrate that the camera can capture quantitatively accurate electromagnetic wave distribution in the diffraction limit. The proposed camera can be used in application such as non-destructive image and beam direction tracer.
机译:研究了一种新型的基于超材料吸收体的亚波长空间分辨率相机的设计,制造和表征。拟议的相机具有简单轻巧的设计,易于携带,低成本,高分辨率和高灵敏度以及对原始场分布的图像干扰或失真最小的特点。拟议相机的成像能力在近场和远场范围内均得到了表征。实验和模拟的近场图像均表明,该摄像机可生成定性准确的图像,并且对原始场分布的失真可忽略不计。远场演示是通过将设计的摄像机与微波凸透镜耦合完成的。远场结果进一步证明,该摄像机可以捕获衍射极限内定量准确的电磁波分布。所提出的相机可以用于诸如非破坏性图像和光束方向示踪剂的应用中。

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