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ENHANCED THERMAL RADIATION BY FEMTOSECOND LASER FABRICATING GRATING PATTERNS ON METAL SURFACES

机译:通过Femtosecond激光制造金属表面上的光栅图案的增强热辐射

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To manipulate the optical property of object by the patterns on its surface is an heat topic for many applications. Thermal radiation is electromagnetic wave in nature, so that researchers can control it spectrally or on polarization by surface patterns likewise. This technique has a promising application prospect on thermophotovoltaic device, selective thermal radiative device, outer space heat transfer and infrared stealth technology etc. For the characteristic length of the surface patterns is approximate to micrometers which can be contrast with the thermal radiation wavelength at general application temperature, femtosecond laser micro-structure processing is an economical and practical method for fabricating desirable surface patterns which is neat edge and almost no heat affected zone. In this paper, we fabricate the surface grating patterns on Ni, Cu and Cr surfaces by femtosecond laser direct writing technique. To heat these samples to 573K and to detect the thermal radiation spectra by a fourier transform infrared spectrometer at the range of 5~25μm. The results show that thermal radiation can be enhanced spectrally by the grating surfaces, the enhanced wavelength is approximate to the grating's period. Surface plasmon polaritons is considered to explain this phenomenon and a numerical simulation result is completed by rigorous coupled wave analysis. The experimental and numerical results show a good agreement.
机译:为了通过其表面上的图案操纵物体的光学性质是许多应用的热门话题。热辐射本质上是电磁波,使得研究人员可以同样通过表面图案控制光谱或通过表面图案控制。该技术在蒸发器装置上具有有希望的应用前景,选择性热辐射装置,外部空间传热和红外隐形技术等。对于表面图案的特征长度是近似的微米,其可以与通用应用的热辐射波长形成对比温度,飞秒激光微结构加工是制造理想的表面图案的经济实用的方法,其是整洁的边缘,几乎没有热影响区域。在本文中,我们通过飞秒激光直接写入技术制造了Ni,Cu和Cr表面上的表面光栅图案。将这些样品加热至573K并通过傅里叶变换红外光谱仪在5〜25μm的范围内检测热辐射光谱。结果表明,热辐射可以通过光栅表面的光谱增强,增强波长近似于光栅的时期。认为表面等离子体极性恒星被认为解释这种现象,并且通过严格的耦合波分析完成了数值模拟结果。实验和数值结果表明良好的一致性。

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