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Omnidirectional wavelength selective emitters/absorbers based on dielectric-filled anti-reflection coated two-dimensional metallic photonic crystals

机译:全向波长选择性发射器/吸收器,基于电介质填充的抗反射涂层二维金属光子晶体

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摘要

We demonstrate designs of dielectric-filled anti-reflection coated (ARC) two-dimensional (2D) metallic photonic crystals (MPhCs) capable of omnidirectional, polarization insensitive, wavelength selective emission/absorption. Up to 26% improvement in hemispherically averaged emittance/absorptance below the cutoff wavelength is observed for optimized hafnium oxide filled 2D tantalum (Ta) PhCs over the unfilled 2D Ta PhCs. The optimized designs possess high hemispherically averaged emittance/absorptance of 0.86 at wavelengths below the cutoff wavelength and low hemispherically averaged emittance/absorptance of 0.12 at wavelengths above the cutoff wavelength, which is extremely promising for applications such as thermophotovoltaic energy conversion, solar absorption, and infrared spectroscopy.
机译:我们演示介电填充的抗反射涂层(ARC)二维(2D)二维金属光子晶体(MPhCs)的设计,该晶体能够全向,对偏振不敏感,波长选择性发射/吸收。对于优化的氧化ha填充的2D钽(Ta)PhC,与未填充的2D Ta PhC相比,在截止波长以下的半球平均发射率/吸收率提高了26%。优化的设计在低于截止波长的波长处具有0.86的高半球平均发射率/吸收率,而在高于截止波长的波长处具有0.12的低半球平均发射率/吸收率,这对于诸如热光伏能量转换,太阳吸收和红外光谱。

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