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Nano-plasmonic Bundt Optenna for broadband polarization-insensitive and enhanced infrared detection

机译:用于宽带极化不敏感和增强的红外检测的纳米等离子体Bundt Optenna

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Infrared detection devices are becoming miniature with micro or nano-scale size. The advantages of downsizing come on the expense of insufficient collection of infrared radiation. Therefore, utilizing nano-plasmonic optical antennas becomes mandatory. However, it is desirable to develop antennas with broad bandwidth, polarization insensitivity, wide field-of-view, and reasonable plasmonic losses in order to collect most of incident infrared radiation and enhance power absorption efficiency. Here, an innovative optical antenna (optenna) is proposed and demonstrated for the first time. It has a novel shape of Bundt baking-pan. The gold Bundt is arranged in a periodic array that can be placed on top of a thin-film infrared absorbing layer. The developed optenna can squeeze infrared electric and magnetic fields to 50 nm-wide area in order to enhance material absorption efficiency. It demonstrates polarization insensitivity and ultra-broad bandwidth with a large fractional-bandwidth within the near, shortwave, and midwave infrared bands. It shows a remarkable enhanced power absorption efficiency up to 8 orders of magnitude with a reasonable average power loss of -3 dB and 80° field-of-view. It can be promising for future applications in solar-cells, telecommunication photodetectors, shortwave cameras, and midwave microbolometers.
机译:红外检测装置具有微观或纳米尺度的微型。缩小尺寸的优点来牺牲红外辐射收集不足。因此,利用纳米等离子体光学天线成为强制性的。然而,希望开发具有宽带宽,极化不敏感性,视野宽和可合理的等离子体损失的天线,以便收集大部分入射的红外辐射并提高功率吸收效率。这里,提出了一种创新的光天线(Optenna)并首次进行了演示。它具有新颖的Bundt烤盘形状。金BUNDT布置在一个周期性阵列中,该周期阵列可以放置在薄膜红外吸收层的顶部。开发的Optenna可以将红外电场和磁场挤压为50nm宽的区域,以提高材料吸收效率。它展示了近近,短波和中空带宽内的偏振不敏感性和超宽带宽。它显示出显着的增强功率吸收效率,高达8个级,具有-3 dB和80°视野的合理平均功率损耗。对于未来的太阳能电池,电信光电探测器,短波相机和中空微孔计,可以承诺。

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