Sergeant Nicholas P, Agrawal Mukul, Peumans Peter
Dept. of Electrical Engineering, Stanford University, Stanford, CA 94305 USA.
Opt Express. 2010 Mar 15;18(6):5525-40. doi: 10.1364/OE.18.005525.
Spectral control of the emissivity of surfaces is essential for efficient conversion of solar radiation into heat. We investigated surfaces consisting of sub-wavelength V-groove gratings coated with aperiodic metal-dielectric stacks. The spectral behavior of the coated gratings was modeled using rigorous coupled-wave analysis (RCWA). The proposed absorber coatings combine impedance matching using tapered metallic features with the excellent spectral selectivity of aperiodic metal-dielectric stacks. The aspect ratio of the V-groove can be tailored in order to obtain the desired spectral selectivity over a wide angular range. Coated V-groove gratings with optimal aspect ratio are predicted to have thermal emissivity below 6% at 720K while absorbing >94% of the incident light. These sub-wavelength gratings would have the potential to significantly increase the efficiency of concentrated solar thermal systems.
对表面发射率进行光谱控制对于将太阳辐射高效转化为热量至关重要。我们研究了由涂覆有非周期金属-电介质堆叠的亚波长V形槽光栅组成的表面。使用严格耦合波分析(RCWA)对涂覆光栅的光谱行为进行了建模。所提出的吸收体涂层将使用渐变金属特征的阻抗匹配与非周期金属-电介质堆叠的出色光谱选择性相结合。可以调整V形槽的纵横比,以便在宽角度范围内获得所需的光谱选择性。预计具有最佳纵横比的涂覆V形槽光栅在720K时的热发射率低于6%,同时吸收超过94%的入射光。这些亚波长光栅有可能显著提高聚光太阳能热系统的效率。