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Effect of windmill-like-shaped defect on TM photonic band gaps of two-dimensional square-lattice photonic crystals

机译:风车状缺陷对二维正方形光子光子晶体TM光子光带间隙的影响

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A novel windmill-like-shaped defect was introduced in two-dimensional square-lattice photonic crystals consisting of circular dielectric rods. The photonic band gap (PBG) and defect modes were numerically analyzed using the plane wave expansion method. We studied the influence of the translation distance and the rotation angle of defect on the photonic band gap. The results show that the symmetry of defect may affect the width of PBG. The transverse magnetic (TM) band-gap first increases and then decreases with increased translation distance. For a translation distance of 0.66a, the width of TM band-gap reached it’s widest value of 0.05057 (ωa/2πc). Additionally, we studied the influence of the rotation angle of the defect on the TM band-gap with a fixed translation distance of 0.66a. We discovered that square-lattice photonic crystals with a rotated windmill-like-shaped defect can generate a larger photonic band gap, and the largest width can reach up to 0.05307 (ωa/2πc) with a rotated angle of 10°.
机译:在由圆形介电棒组成的二维正方形光子光子晶体中引入了一种新颖的风车状缺陷。使用平面波膨胀法在数值分析光子带隙(PBG)和缺陷模式。我们研究了翻译距离和缺陷旋转角度对光子带隙的影响。结果表明,缺陷的对称可能会影响PBG的宽度。横向磁性(TM)带间隙首先增加,然后随着量的翻译距离而降低。对于0.66A的翻译距离,TM带隙的宽度达到了最大值为0.05057(ωa/2πc)。另外,我们研究了缺陷对TM带式间隙上的旋转角度的影响,其固定平移距离为0.66A。我们发现具有旋转风车状缺陷的方形晶格光子晶体可以产生较大的光子带隙,并且最大宽度可以达到最多0.05307(ω/2πc),旋转角度为10°。

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