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Photonic band gap engineering in two-dimensional photonic crystals and iso-frequency contours

机译:二维光子晶体和等频轮廓线的光子带隙工程

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摘要

We have theoretically investigated photonic band structures of two-dimensional (2D) photonic crystals (PCs) in air background. The lattices consist of the rotated and modified square dielectric rods. The influence of opto-geometric parameters of designed unit-cell structures are analyzed in terms of opening frequency gaps and appearing tilted band graphs by applying plane wave expansion method. Optimum structures with large photonic band gaps are notified. In order to get “gap maps”, the gaps as a function of the size and the rotation angle of the square rods are calculated. So, the band gaps of transverse magnetic and transverse electric polarization modes indicate symmetry in point of the rotation angle and these band gaps overlap. Thus, the smallest width of the narrow air veins is founded as 0.06a. The results show almost 40 nm complete width of the air veins for mid-gap wavelength λ = 1.55 μm. This result shows the fabrication capability of these optimized PC structures.
机译:我们已经从理论上研究了空气背景下的二维(2D)光子晶体(PC)的光子能带结构。晶格由旋转的和改良的方形介电棒组成。通过应用平面波扩展方法,分析了所设计的晶胞结构的光电几何参数对开口频率间隙和出现的倾斜谱带图的影响。通知具有大光子带隙的最佳结构。为了获得“间隙图”,需要计算间隙随方杆尺寸和旋转角度的变化。因此,横向磁极化模式和横向极化模式的带隙在旋转角度上表示对称,并且这些带隙重叠。因此,窄气孔的最小宽度被确定为0.06a。结果显示,在中间间隙波长λ= 1.55μm时,空气静脉的完整宽度几乎为40 nm。该结果表明了这些优化的PC结构的制造能力。

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