Guo Yu, Fan Shanhui
Opt Express. 2016 Dec 26;24(26):29896-29907. doi: 10.1364/OE.24.029896.
We numerically demonstrate narrowband thermal emission with unity emissivity peak in the near-infrared range by critically coupling a flat tungsten surface with guided resonances of a dielectric photonic crystal slab. The tungsten surface is separated from the photonic crystal slab by a vacuum gap. The structure possesses significant tunability for both the center frequency and the linewidth of the thermal emission band. Moreover, the tungsten surface, being un-structured, should exhibit enhanced thermal stability at elevated temperature as compared to tungsten nanostructures.
我们通过将平坦的钨表面与介电光子晶体平板的导模共振进行临界耦合,在数值上证明了在近红外范围内具有单位发射率峰值的窄带热发射。钨表面与光子晶体平板之间由真空间隙隔开。该结构对于热发射带的中心频率和线宽都具有显著的可调性。此外,与钨纳米结构相比,未结构化的钨表面在高温下应表现出更高的热稳定性。