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3D coaxial out-of-plane metallic antennas for filtering and multi-spectral imaging in the infrared range

机译:3D同轴面外金属天线用于红外范围内的滤波和多光谱成像

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摘要

We fabricated and investigated a new configuration of 3D coaxial metallic antennas working in the infrared which combines the strong lateral light scattering of vertical plasmonic structures with the selective spectral transmission of 2D arrays of coaxial apertures. The coaxial structures are fabricated with a top-down method based on a template of hollow 3D antennas. Each antenna has a multilayer radial structure consisting of dielectric and metallic materials not achievable in a 2D configuration. A planar metallic layer is inserted normally to the antennas. The outer dielectric shell of the antenna defines a nanometric gap between the horizontal plane and the vertical walls. Thanks to this aperture, light can tunnel to the other side of the plane, and be transmitted to the far field in a set of resonances. These are investigated with finite-elements electromagnetic calculations and with Fourier-transform infrared spectroscopy measurements. The spectral position of the resonances can be tuned by changing the lattice period and/or the antenna length. Thanks to the strong scattering provided by the 3D geometry, the transmission peaks possess a high signal-to-noise ratio even when the illuminated area is less than 2 × 2 times the operation wavelength. This opens new possibilities for multispectral imaging in the IR with wavelength-scale spatial resolution.
机译:我们制造并研究了在红外线中工作的3D同轴金属天线的新配置,该配置将垂直等离激元结构的强侧向光散射与同轴孔径的2D阵列的选择性光谱传输结合在一起。同轴结构是基于空心3D天线模板以自顶向下的方法制造的。每个天线具有多层径向结构,该多层径向结构由2D配置中无法实现的介电和金属材料组成。通常将平面金属层插入天线。天线的外部介电壳在水平面和垂直壁之间定义了一个纳米间隙。由于有了这个孔,光可以隧穿到平面的另一侧,并以一组共振的方式传输到远场。通过有限元电磁计算和傅里叶变换红外光谱测量对这些进行了研究。谐振的频谱位置可以通过更改晶格周期和/或天线长度来调整。由于3D几何结构提供了强大的散射,即使在照射面积小于工作波长的2××2倍的情况下,透射峰也具有很高的信噪比。这为红外光谱中具有波长尺度空间分辨率的多光谱成像打开了新的可能性。

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