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Enhancing the resolution in imaging using folded metamaterial split ring resonator structure at microwave frequencies

机译:在微波频率下使用折叠的超材料分流环谐振器结构来增强成像的分辨率

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A novel and better resolution topology for reducing the sensing area of conventional Split Ring Resonator (SRR) metamaterial structure is proposed. The conventional planar SRR structure is fabricated on a thin flexible film and is folded to raise its split region slightly up with respect to the plane of the SRR (Folded Split Ring Resonator-FSRR). The structure exhibits strong localization of electric field in the projected region of the sensor, by confining the evanescent waves in that region having dimension much smaller than the operating wavelength. The proposed sensor is placed between transmitting and receiving probes of a Vector Network Analyzer (VNA) to form the sensing probe. Two dielectric samples arranged at different distances of separation are scanned and the corresponding transmission characteristics S_(21) are drawn for analysing the image resolution. The resolution and sensitivity of the above proposed sensor is compared with conventional SRR and is found to be superior in performance. This novel FSRR provides a better resolution and thereby overcomes the diffraction limit in imaging up to λ/30, whereas for the conventional planar SRR it will be around λ /15. The design is simple, compact and inexpensive. The potential of proposed sensor can be extended to sub-wavelength imaging of dielectric materials, biological samples and can be used for non-destructive testing.
机译:提出了一种用于减小传统分流谐振器(SRR)超材料结构的传感区域的新颖和更好的分辨率拓扑。传统的平面SRR结构在薄的柔性膜上制造,并折叠以稍微向上稍微向上稍微向SRR(折叠式旋转环谐振器-FSRR)略微上升。通过将具有大于工作波长的尺寸小得多的区域中的渐变波在传感器的投影区域中,该结构在传感器的投影区域中表现出强烈定位。所提出的传感器被放置在传输和接收向量网络分析器(VNA)的探针之间以形成感测探针。扫描布置在不同分离距离处的两个电介质样本,并绘制相应的透射特性S_(21)以分析图像分辨率。将上述传感器的分辨率和灵敏度与常规SRR进行比较,并且发现性能优异。该新颖FSRR提供了更好的分辨率,从而克服了成像的衍射限制直到λ/ 30,而对于传统的平面SRR,它将在λ/ 15周围。设计简单,紧凑且廉价。所提出的传感器的电位可以扩展到介电材料的亚波长成像,生物样品,并且可用于非破坏性测试。

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