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Mie-Metamaterials-Based Thermal Emitter for Near-Field Thermophotovoltaic Systems

机译:基于三重超材料的近场热光电系统热发射器

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In this work, we theoretically analyze the performance characteristics of a near-field thermophotovoltaic system consisting a Mie-metamaterial emitter and GaSb-based photovoltaic cell at separations less than the thermal wavelength. The emitter consists of a tungsten nanoparticle-embedded thin film of SiO 2 deposited on bulk tungsten. Numerical results presented here are obtained using formulae derived from dyadic Green’s function formalism and Maxwell–Garnett-Mie theory. We show that via the inclusion of tungsten nanoparticles, the thin layer of SiO 2 acts like an effective medium that enhances selective radiative heat transfer for the photons above the band gap of GaSb. We analyze thermophotovoltaic (TPV) performance for various volume fractions of tungsten nanoparticles and thicknesses of SiO 2 .
机译:在这项工作中,我们从理论上分析了近场热光电系统的性能特征,该系统由米氏材料发射极和GaSb基光伏电池组成,其间距小于热波长。发射极由沉积在块状钨上的钨纳米粒子嵌入的SiO 2薄膜组成。此处给出的数值结果是使用源自二进格林函数形式主义和Maxwell-Garnett-Mie理论的公式获得的。我们表明,通过包含钨纳米颗粒,SiO 2薄层的作用类似于有效介质,可增强GaSb带隙以上光子的选择性辐射热传递。我们分析了钨纳米粒子的各种体积分数和SiO 2厚度的热光伏(TPV)性能。

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