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Near-Field Probes for Subsurface Detection Using Split-Ring Resonators

机译:使用裂环谐振器进行地下探测的近场探头

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摘要

Most of the previous microwave near-field probes and imaging techniques focused on surface imaging, providing ultrahigh lateral resolution. Few microwave near-field probes were developed for subsurface detection, offering both high lateral and depth resolution with varying degrees of effectiveness. In this work, a novel microwave near-field probe using a single split-ring resonator is introduced with the primary focus of subsurface detection. The design is simple, compact, inexpensive, and easy to fabricate using printed circuit board technology. Fourier spatial analysis of the field of the new probe reveals a substantial enhancement of the evanescent field, thus making a significant difference in subsurface detection. Experimental results illustrate that a small 3.24-mm aluminum block immersed in 1% sodium chloride (NaCl) solution and positioned 4 mm away from the surface was successfully detected using a probe operating at 1.218 GHz. For this particular experiment, where the size of the object was $lambda/74$ , the detection ability of the new probe was tested using 2% and 3% NaCl solution as well. The phase changes due to the depth of the object demonstrate that the new probe is able to sense the presence of the same object in very lossy medium (3% NaCl whose loss tangent is approximately unity) with depth of 1–2 mm in spite of a standoff distance of 1-mm air and a container thickness of 6.35 mm.
机译:先前的大多数微波近场探头和成像技术都集中在表面成像上,可提供超高的横向分辨率。很少有微波近场探头用于地下探测,可提供高横向分辨率和深度分辨率以及不同程度的有效性。在这项工作中,介绍了一种使用单开口环谐振器的新型微波近场探头,其主要焦点是地下探测。该设计简单,紧凑,便宜,并且易于使用印刷电路板技术制造。对新探针场的傅立叶空间分析显示,渐逝场显着增强,因此在地下探测中具有显着差异。实验结果表明,使用工作在1.218 GHz的探头可以成功检测到浸入1%氯化钠(NaCl)溶液中并距表面4 mm的3.24 mm小铝块。对于此特定实验,对象的大小为$ lambda / 74 $,还使用2%和3%NaCl溶液测试了新探针的检测能力。由于物体的深度而引起的相位变化表明,新探头即使在深度为1-2 mm的极有损耗的介质(3%NaCl的损耗角正切近似为1)中也能感应到同一物体的存在。空气的对峙距离为1毫米,容器厚度为6.35毫米。

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