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Self-collimation in planar photonic crystals

机译:平面光子晶体中的自我准直

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摘要

We analyze, in three dimensions, the dispersion properties of dielectric slabs perforated with two-dimensional photonic crystals (PCs) of square symmetry. The band diagrams are calculated for all k-vectors in the first Brillouin zone, and not only along the characteristic high-symmetry directions. We have analyzed the equal-frequency contours of the first two bands, and we found that the square lattice planar photonic crystal is a good candidate for the self-collimation of light beams. We map out the group velocities for the second band of a square lattice planar PC and show that the group velocity is the highest in the region of maximum self-collimation. Such a self-collimated beam is predicted to show beating patterns due to the specific shape of the equal-frequency contours. A geometrical transformation maps the region of the first and second photonic bands where self-collimation takes place one onto the other and gives additional insights on the structural similarities of self-collimation in those two bands.
机译:我们在三维分析,三维与方形对称的二维光子晶体(PCS)穿孔的电介质板的分散性能。对于第一布里渊区中的所有k载体计算带图,不仅沿着特征高对称方向。我们已经分析了前两个频段的相等频率轮廓,并且我们发现方形格平面光子晶体是光束自成的良好候选者。我们映射为方形格平面PC的第二频段的组速度,并表明该群体速度是最大自直准直的区域中最高的。预计这种自直链光束由于等频轮廓的特定形状而显示出跳动模式。几何变换地图映射了第一和第二光子带的区域,其中自直链接到另一个上的自准直,并对这两个频带中的自组合的结构相似性提供了额外的洞察。

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