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THERMAL RADIATIVE PROPERTIES OF PHOTONIC CRYATALS

机译:光子晶体的热辐射性能

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We investigate the spectral directional reflectivity of photonic crystals assembled with 2μm silica particles. The propagation of electromagnetic wave can be controlled by photonic crystals. Therefore photonic crystals are anticipated for advanced control of thermal radiation beyond solid state properties. Samples are prepared by Catalysts & Chemicals Industries Co., Ltd. The close-packed photonic crystals are fabricated on a Si wafer by using self-assembly of the colloidal particles under the specific condition. We measure reflectivities of the samples by using a FT-IR (Fourier Transform -Infrared Spectroscopy). The spectral reflectivity is enhanced at specific wavenumber. The peaks of spectral reflectivity shift to larger wavenumber as a function of an increased incident angle. The angular dependency of reflectivity can be roughly explained by using the modified Bragg's equation taking into account Snell's law. We show that the reflectivity in IR range is well enhanced by using a photonic crystal.
机译:我们研究了用2μm二氧化硅颗粒组装的光子晶体的光谱方向反射率。电磁波的传播可以通过光子晶体来控制。因此,预计光子晶体预计过度控制超出固态性能的热辐射。样品由催化剂和化学物质工业有限公司制备。通过使用特定条件下的胶体颗粒的自组装,在Si晶片上制造紧密填充的光子晶体。我们使用FT-IR(傅里叶变换-FRARED光谱)测量样品的反射功能。在特定波数中增强光谱反射率。光谱反射率的峰作为较大的波数作为增加的入射角的函数。通过使用改进的布拉格的等式考虑到斯内尔的法律,可以大致解释反射率的角度依赖性。我们表明IR范围内的反射率通过使用光子晶体得到很好的增强。

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