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Ultra-Broadband High-Efficiency Solar Absorber Based on Double-Size Cross-Shaped Refractory Metals

机译:基于双尺寸交叉形耐火金属的超宽带高效太阳能吸收剂

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摘要

In this paper, a theoretical simulation based on a finite-difference time-domain method (FDTD) shows that the solar absorber can reach ultra-broadband and high-efficiency by refractory metals titanium (Ti) and titanium nitride (TiN). In the absorption spectrum of double-size cross-shaped absorber, the absorption bandwidth of more than 90% is 1182 nm (415.648–1597.39 nm). Through the analysis of the field distribution, we know the physical mechanism is the combined action of propagating plasmon resonance and local surface plasmon resonance. After that, the paper has a discussion about the influence of different structure parameters, polarization angle and angle of incident light on the absorptivity of the absorber. At last, the absorption spectrum of the absorber under the standard spectrum of solar radiance Air Mass 1.5 (AM1.5) is studied. The absorber we proposed can be used in solar energy absorber, thermal photovoltaics, hot-electron devices and so on.
机译:本文基于时域有限差分法(FDTD)进行了理论模拟,结果表明,难熔金属钛(Ti)和氮化钛(TiN)可以使太阳能吸收体达到超宽带和高效率。在双倍十字形吸收体的吸收光谱中,超过90%的吸收带宽为1182 nm(415.648–1597.39 nm)。通过对场分布的分析,我们知道了物理机理是传播等离子体激元共振和局部表面等离子体激元共振的联合作用。之后,讨论了不同结构参数,偏振角和入射光角度对吸收体吸收率的影响。最后,研究了在太阳辐射空气质量1.5(AM1.5)的标准光谱下吸收体的吸收光谱。我们提出的吸收器可用于太阳能吸收器,热光伏,热电子设备等。

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