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A refractory metamaterial absorber for ultra-broadband, omnidirectional and polarization-independent absorption in the UV-NIR spectrum

机译:耐火材料超材料吸收器ultra-broadband、全向和UV-NIR polarization-independent吸收光谱

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摘要

In this paper, efficient ultra-broadband absorption from ultraviolet (UV) to near infrared (NIR) is achieved using a metamaterial perfect absorber (MPA) with refractory constituents. Both simulated and experimental results indicate that this proposed MPA exhibits an average absorption over 95 at wavelengths ranging from 200 nm to 900 nm. Besides, owing to the ultrathin thickness and symmetrical topology of this device, it exhibits great angular tolerance up to 60 degrees independent of the incident polarizations. Excellent thermal stability is also demonstrated at high operation temperatures. The physical origin of the ultra-broadband characteristics is mainly based on diffraction/interference engineering at short wavelengths and the anti-reflection effect at long wavelengths. We believe that such a device may find potential applications ranging from photodetection and photothermal energy conversion to ultraviolet protection and thermophotovoltaics.
机译:在这篇文章中,高效ultra-broadband近红外吸收的紫外线(UV)(NIR)是通过使用超材料完美吸收器(MPA)和耐火材料成分。模拟和实验结果表明,这个提议MPA展品平均吸收在波长从200纳米到超过95%900海里。这个设备和对称拓扑,它展品伟大60度角公差独立的入射偏振的。优良的热稳定性也证明在高操作温度。ultra-broadband特征的起源主要基于衍射/干扰以很短的波长和工程anti-reflection长波长的影响。相信这样的装置可能会发现潜力从光电探测和应用紫外光照能量转换保护和热光生电的。

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