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Nanoantennas for enhancing and confining the magnetic optical field

机译:用于增强和限制磁场的纳米天线

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We propose different optical antenna structures for enhancing and confining the magnetic optical field. A common feature of these structures are concave corners in thin metal films as locations of the enhanced magnetic field. This proposal is inspired by Babinet's principle as the concave edges are the complementary structures to convex metal corners, which are known to be locations of a strongly enhanced electric field. Bowtie antennas and the bowtie apertures of appropriate size were shown to exhibit resonances in the infrared frequency range with an especially strong enhancement of the electrical field in the gap between 2 convex metal corners. We show by numerical calculations, that the complementary structures, the complementary bowtie aperture - the diabolo antenna - and the complementary bow tie antenna - two closely spaced triangular apertures in a metal film with a narrow gap between two opposing concave corners - exhibit resonances with a strongly enhanced magnetic field at the narrow metal constriction between the concave corners. We suggest sub-wavelength circuits of concave and convex corners as building blocks of planar metamaterials
机译:我们提出了不同的光学天线结构,以增强和限制磁场。这些结构的共同特征是金属薄膜中的凹角作为增强磁场的位置。该建议受Babinet原理的启发,因为凹边是凸角金属的互补结构,凸角金属角是已知强烈增强的电场的位置。蝴蝶结天线和适当尺寸的蝴蝶结孔显示出在红外频率范围内的谐振,其中两个凸形金属角之间的间隙中的电场特别强。我们通过数值计算表明,互补结构,互补领结孔径-空中陀螺天线-和互补领结天线-金属膜中两个紧密间隔的三角形孔径,在两个相对的凹角之间有狭窄的间隙-表现出共振。凹角之间的狭窄金属收缩处的磁场大大增强。我们建议将凹凸角的亚波长电路作为平面超材料的构建基块

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