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Polarization mode control of two-dimensional photonic crystal laser having a square lattice structure

机译:具有正方形晶格结构的二维光子晶体激光器的偏振模式控制

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摘要

We investigate in detail control methods of polarization mode in a two-dimensional square-lattice photonic crystal laser. In order to control the polarization mode using the square lattice, we investigate the eigenmode of the electromagnetic field against the possible symmetry groups of a square lattice. Both the electromagnetic field distributions of lasing oscillation mode and the band diagram are significantly influenced by the symmetry groups. In the case of the square lattice structure, symmetries "p1", "pm", "p2", and "pmm" are suitable for obtaining the unidirectional polarization mode. Among these symmetry groups, the symmetry group "pmm" is especially interesting considering the simplicity of the eigenmode of the electromagnetic field. In order to obtain the symmetry group "pmm", we deform the unit cell structure of a square lattice from circular to elliptical and investigate the properties of symmetry group "pmm" in detail. The elliptical ratio of the unit cell structure can modify the coupling balance of a lightwave propagating in two perpendicular in-plane directions and can control the eigen energy of each band edge.
机译:我们详细研究了二维方格光子晶体激光器中偏振模的控制方法。为了使用正方形晶格控制极化模式,我们针对正方形晶格的可能对称组研究了电磁场的本征模。激光振荡模式的电磁场分布和能带图都受到对称组的显着影响。在正方形晶格结构的情况下,对称性“ p1”,“ pm”,“ p2”和“ pmm”适合于获得单向偏振模。考虑到电磁场本征模的简单性,在这些对称组中,对称组“ pmm”特别有趣。为了获得对称组“ pmm”,我们将正方形晶格的晶胞结构从圆形变形为椭圆形,并详细研究了对称组“ pmm”的性质。晶胞结构的椭圆率可以改变在两个垂直的平面内方向上传播的光波的耦合平衡,并且可以控制每个能带边缘的本征能量。

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