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Polarization beam splitter based on two-dimensional modified annular photonic crystals with square and triangular lattices

机译:基于具有方形和三角形晶格的二维环形光子晶体的偏振分束器

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摘要

We study a polarization beam splitting phenomenon in modified annular photonic crystals. The modified structures are composed of square and triangular lattices with circular and square air holes in a dielectric background in which a dielectric rod is added to each air hole. The inner dielectric rods are not located at the center of the holes and are oriented relative to the lattice axis. At first, isofrequency contours of the structures are numerically investigated for different sizes of air holes and rods, using the plane wave expansion method. The effects of additional rods are clearly demonstrated in terms of tilted contours, which is effective in the direction of flow of light for different polarizations. Finally, the finite-difference time-domain method is utilized to depict the different traveling path of two orthogonal transverse magnetic and electric polarizations.
机译:我们研究了改性环形光子晶体中的偏振分束现象。修改后的结构由正方形和三角形的格子组成,在电介质背景中具有圆形和正方形的气孔,其中将电介质棒添加到每个气孔中。内部电介质棒不位于孔的中心,而是相对于晶格轴定向的。首先,使用平面波扩展方法,针对不同尺寸的气孔和气杆,对结构的等频轮廓进行了数值研究。倾斜的轮廓清楚地展示了附加杆的效果,这对于不同的偏振在光的流动方向上是有效的。最后,利用时域有限差分法描述了两个正交的横向磁极化和电极化的不同传播路径。

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