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首页> 外文期刊>Applied optics >Two-dimensional trilayer grating with a metal/insulator/metal structure as a thermophotovoltaic emitter
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Two-dimensional trilayer grating with a metal/insulator/metal structure as a thermophotovoltaic emitter

机译:具有金属/绝缘体/金属结构的二维三层光栅作为热光电发射器

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A thermophotovoltaic system that converts thermal energy into electricity has considerable potential for applications in energy utilization fields. However, intensive emission in a wide spectral and angular range remains a challenge in improving system efficiency. This study proposes the use of a 2D trilayer grating with a tungsten/silica/tungsten (W/SiO2/W) structure on a tungsten substrate as a thermophotovoltaic emitter. The finite-difference time-domain method is employed to simulate the radiative properties of the proposed structure. A broadband high emittance with an average spectral emittance of 0.953 between 600 and 1800 nm can be obtained for both transverse magnetic and transverse electric polarized waves. On the basis of the inductance-capacitance circuit model and dispersion relation analyses, this phenomenon is mainly considered as the combined contribution of surface plasmon polaritons and magnetic polaritons. A parametric study is also conducted on the emittance spectrum of the proposed structure, considering geometric parameters, polar angles, and azimuthal angles for both TM and TE waves. The study demonstrates that the emitter has good wavelength selectivity and polarization insensitivity in a wide geometric and angular range. (C) 2016 Optical Society of America
机译:将热能转换成电能的热电光伏系统在能源利用领域具有巨大的潜力。然而,在宽光谱和角度范围内的密集发射仍然是提高系统效率的挑战。这项研究建议在钨基板上使用具有钨/二氧化硅/钨(W / SiO2 / W)结构的二维三层光栅作为热光电发射器。采用时域有限差分法模拟了该结构的辐射特性。对于横向磁极化波和横向电极化波,都可以获得宽带高发射率,其平均光谱发射率为0.953,介于600和1800 nm之间。在电感电容电路模型和色散关系分析的基础上,这种现象主要被认为是表面等离激元极化子和磁极化子的共同贡献。还针对拟议结构的发射光谱进行了参数研究,同时考虑了TM和TE波的几何参数,极角和方位角。研究表明,该发射器在宽的几何和角度范围内具有良好的波长选择性和偏振不敏感性。 (C)2016美国眼镜学会

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