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THERMAL RADIATIVE PROPERTIES OF PHOTONIC CRYATALS

机译:光子晶体的热辐射特性

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摘要

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:我们研究了组装有2μm二氧化硅颗粒的光子晶体的光谱方向反射率。电磁波的传播可以由光子晶体控制。因此,光子晶体被期望用于固态性质之外的热辐射的高级控制。样品是由Catalysts&Chemicals Industries Co.,Ltd.准备的。通过在特定条件下使用胶体颗粒的自组装,可以在Si晶片上制造密堆积的光子晶体。我们通过使用FT-IR(傅里叶变换-红外光谱)测量样品的反射率。在特定波数下,光谱反射率得到增强。光谱反射率的峰值随入射角的增加而移至更大的波数。通过考虑斯涅尔定律,使用修正的布拉格方程,可以大致解释反射率的角度依赖性。我们显示,通过使用光子晶体,红外范围内的反射率得到了很好的提高。

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