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Geometry influence on the transmission spectra of dielectric single layers of spheres with different compactness

机译:几何形状对紧密度不同的球体介电单层透射光谱的影响

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摘要

The transmission of spectra of different dielectric spheres single layer arrangements has been measured. High dielectric permittivity (ε=7) spheres of several millimeters of diameter were used to build the samples whose transmission was measured in the microwave range. The behavior of lattices arranged in square and triangular geometries have been compared in a number of different compactness cases. The same patterns measured have also been calculated by finite-difference time-domain (FDTD) method. Spectra from different geometrical arrangements of the same compactness (measured with the same filling fraction value) are very similar in some cases. Based on the level of similarity we propose three compactness regions. The high compactness region, where the structure effect is important, presents spectra clearly different for the two geometries. In a medium compactness region spectra are almost identical, suggesting a dominant effect of single sphere effects. Finally, in the low compactness region, the spectra from the two geometrical configurations diverge again as the Bragg diffraction values are approached.
机译:已经测量了不同介电球单层布置的光谱的透射率。使用几毫米直径的高介电常数(ε= 7)球体来制作样品,并在微波范围内测量其透射率。在许多不同的紧凑性情况下,已经比较了以正方形和三角形几何形状排列的晶格的行为。通过有限差分时域(FDTD)方法也可以计算出相同的测量模式。在某些情况下,具有相同压实度(用相同的填充分数值测量)的不同几何排列的光谱非常相似。基于相似度,我们提出了三个紧密度区域。结构效应很重要的高密实度区域呈现出两种几何形状明显不同的光谱。在中等紧实度范围内,光谱几乎相同,这表明了单球效应的主要作用。最后,在低致密性区域中,随着接近布拉格衍射值,来自两个几何构型的光谱再次发散。

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