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Localized electromagnetic distortion in 2D metal hole array and its application to imaging of permittivity distribution

机译:二维金属孔阵列中的局部电磁畸变及其在介电常数分布成像中的应用

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We performed two-dimensional imaging of conductive and dielectric samples above a metal plate with a two-dimensional array of subwavelength holes (metal hole array) with electromagnetic distortion formed by inserting a needle-like conductive probe into holes in it. A metal hole array has a special electromagnetic response such as localization of electromagnetic waves at a specific frequency near it. Generally, the phenomenon described above is called “spoof surface plasmon resonance.” And such special media can be regarded as “metamaterial” from a point of view that it realizes a macroscopically uniform medium by the subwavelength-size holes in the metal plate. We conducted numerical analyses of electric field profiles in order to clarify how electric field distributions near the metamaterial change by the electromagnetic distortion, and confirmed the phenomenon that these uniform electric fields around the “metamaterial” are distorted locally by using the needle-like conductive probe. Electromagnetic waves response to the permittivity at the space, so that it is considered that the change of the permittivity at the space is reflected as that of the electromagnetic distribution at the space. Based on the above, the formation of the electromagnetic distortion can be a detecting method of samples which have dielectric responses. Therefore, we consider that this two-dimensional imaging system is applicable to detecting something which has abnormal permittivity inside bulk material, such as a cancer in biomaterial tissues.
机译:我们对金属板上的导电和介电样品进行了二维成像,该金属板上具有通过将针状导电探针插入其中的孔而形成的具有电磁畸变的亚波长孔的二维阵列(金属孔阵列)。金属孔阵列具有特殊的电磁响应,例如将电磁波定位在其附近的特定频率处。通常,上述现象称为“欺骗表面等离子体激元共振”。并且,从通过金属板中的亚波长尺寸的孔实现宏观上均匀的介质的观点出发,可以将这种特殊介质视为“超材料”。我们进行了电场分布的数值分析,以弄清超材料附近的电场分布是如何通过电磁畸变而改变的,并确认了这种现象,即通过使用针状导电探针,“超材料”周围的这些均匀电场会局部变形。 。电磁波响应于该空间处的介电常数,因此认为该空间处的介电常数的变化被反映为该空间处的电磁分布的变化。基于以上所述,电磁畸变的形成可以是具有介电响应的样品的检测方法。因此,我们认为该二维成像系统可用于检测在散装材料内部具有异常介电常数的物体,例如生物材料组织中的癌症。

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