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    • 摘要: 研究了一种基于超材料的光学太阳反射镜(optical solar reflector, OSR),其由掺铝氧化锌(AZO)超表面、MgF2介质层和Ag金属反射层三层结构组成。在热红外AZO超表面激发表面等离激元共振增强电磁吸收,MgF2介质层介电常数的稳定性减少了吸收振荡带来的反射,在可见光照射下AZO超表面和MgF2介质层的透明特性可降低太阳辐射损耗,Ag金属反射层可有效抑制透射。仿真结果表明,优化后的OSR在0.3~2.5 µm内有17.6%的低太阳吸收率,在2.5~30.0 µm内有86.5%的高红外发射率。此外,偏振和入射角度对其性能影响较小。该结构在红外波段实现了较好的吸收,在红外热成像、辐射制冷等领域也具有潜在应用价值。

       

      Abstract: A metamaterial-based optical solar reflector (OSR) consisting of a three-layer structure of aluminum-doped zinc oxide (AZO) metasurface, a MgF2 dielectric layer and an Ag metal reflector layer is investigated. In the thermal infrared, the AZO metasurface excites the surface equipartition excitation resonance to enhance the electromagnetic absorption, the stability of the MgF2 dielectric constant reduces the reflection caused by the absorption oscillations. In the visible light, the transparent properties of AZO and MgF2 provide the low loss for the solar radiation, and the Ag reflector layer effectively suppresses the transmission. Simulation results show that the optimized OSR has a low solar absorptivity of 17.6% in 0.3~2.5 µm and a high IR emissivity of 86.5% in 2.5~30 µm. In addition, polarization and angle of incidence have a small effect on its performance. The structure achieves good absorption in the infrared band and also has potential applications in infrared thermography, radiative cooling, and other fields.