AEROSPACE SHANGHAI, Volume. 41, Issue 6, 63(2024)
Design and Radiation Characteristics of Thermal Control Metamaterials Based on Photonic Resonance Effect
Fig. 1. Overall structure of the thermal control metamaterial based on the photon resonance effect
Fig. 2. Refractive indices and starting absorption wavelengths of common inorganic substances
Fig. 3. Band gap widths and starting absorption wavelengths of common inorganic substances
Fig. 4. Infrared extinction coefficients of common inorganic substances
Fig. 5. A one-dimensional photonic crystal composed of two high and low refractive index materials
Fig. 6. Multilayer structure of the one-dimensional photonic crystal and its solar reflectivity characteristics
Fig. 7. Model of SiO2 microspheres and the simulated spectral characteristics
Fig. 8. Reflective photonic crystal-high emission resonator composite structure and its optical properties
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Hexaing HAN, Huifen WANG, Jun XU, Qibin ZHAO, Xiaokun SONG, Kangli CAO, Gang LIU. Design and Radiation Characteristics of Thermal Control Metamaterials Based on Photonic Resonance Effect[J]. AEROSPACE SHANGHAI, 2024, 41(6): 63
Category: Innovation and Exploration
Received: Nov. 4, 2024
Accepted: --
Published Online: Mar. 7, 2025
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