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Indirect Measurements of Coherent Thermal Emission from a Truncated Photonic Crystal Structure

机译:截断光子晶体结构的相干热辐射的间接测量

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Recently, coherent thermal emission has been demonstrated using a multilayer structure consisting of a one-dimensional photonic crystal coated on a silver layer, that is, a photonic-crystal-on-Ag structure. The key to enabling coherent emission is to excite a surface wave at the photonic crystal-Ag interface in the stop band of the photonic crystal. In this paper, we describe a detailed theoretical and experimental investigation of coherent thermal emission from the fabricated photonic-crystal-on-Ag structure in the near-infrared region. A Fourier-transform infrared spectrometer, equipped with a specular reflectance accessory, was used to measure the spectral reflectance at incidence angles of 10, 30, and 45 deg. In addition, a laser scatterometer was used to measure the angle-resolved reflectance at the wavelength of 891 nm. The emissivity obtained from the measured reflectance exhibits temporal and spatial coherence. The surface-wave dispersion relation at the photonic crystal-Ag interface was calculated using the supercell method with modified matrix equations that guarantee the convergence of solutions, especially when a metallic layer is involved. The resonance condition obtained from measurements closely matches the dispersion relation. Along with the dispersion curves, calculated field magnitude at the photonic crystal-Ag interface also confirms the existence of surface waves where the field is highly localized.
机译:近来,已经证明了使用由涂覆在银层上的一维光子晶体组成的多层结构,即Ag上的光子晶体结构的相干热发射。实现相干发射的关键是激发光子晶体阻带中的光子晶体-Ag界面处的表面波。在本文中,我们描述了在近红外区域中从Ag上制造的光子晶体上的相干热发射的详细理论和实验研究。配备有镜面反射附件的傅立叶变换红外光谱仪用于测量入射角为10、30和45度时的光谱反射率。此外,使用激光散射仪测量在891 nm波长处的角分辨反射率。从测得的反射率获得的发射率表现出时间和空间相干性。光子晶体-Ag界面处的表面波色散关系是使用具有改进的矩阵方程的supercell方法计算的,该矩阵方程可确保溶液的收敛性,特别是在涉及金属层时。通过测量获得的谐振条件与色散关系紧密匹配。除色散曲线外,在光子晶体-Ag界面处计算出的场强还证实了存在高度局域性的表面波。

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