Chou Jeffrey B, Yeng Yi Xiang, Lenert Andrej, Rinnerbauer Veronika, Celanovic Ivan, Soljačić Marin, Wang Evelyn N, Kim Sang-Gook
Opt Express. 2014 Jan 13;22 Suppl 1:A144-54. doi: 10.1364/OE.22.00A144.
The design and simulation of a wide angle, spectrally selective absorber/emitter metallic photonic crystal (MPhC) is presented. By using dielectric filled cavities, the angular, spectrally selective absorption/emission of the MPhC is dramatically enhanced over an air filled design by minimizing diffraction losses. Theoretical analysis is performed and verified via rigorous coupled wave analysis (RCWA) based simulations. An efficiency comparison of the dielectric filled designs for solar thermophotovoltaic applications is performed for the absorber and emitter which yields a 7% and 15.7% efficiency improvement, respectively, compared to air filled designs. The converted power output density is also improved by 33.5%.
本文介绍了一种广角、光谱选择性吸收体/发射体金属光子晶体(MPhC)的设计与模拟。通过使用填充电介质的腔体,与空气填充设计相比,通过最小化衍射损耗,显著增强了MPhC的角度和光谱选择性吸收/发射。通过基于严格耦合波分析(RCWA)的模拟进行了理论分析并得到验证。对用于太阳能热光伏应用的填充电介质设计的吸收体和发射体进行了效率比较,与空气填充设计相比,效率分别提高了7%和15.7%。转换后的功率输出密度也提高了33.5%。