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Annular photonic crystal defect mode for operation of single-mode laser

机译:单模激光器操作的环形光子晶体缺陷模式

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In analogy to the impurity levels of semiconductors, optical cavities are created if irregular regions are introduced into the perfect photonic crystals. Photonic crystal single defect cavity is expected to obtain nearly thresholdless laser because it can create wavelength-scale small resonant mode with high-quality factors and high spontaneous emission coupling. In this paper, we have studied a new type of defect called annular microcavity created by drilling a circular hole in a usual defect cylinder in two-dimensional triangular photonic crystal by using the supercell method. The hole within the rod greatly modifies the defect modes by controlling filling fraction of dielectric material from the inner of the defect and lowering symmetry of the defect. It is found that the annular defect provides extra two more variables due to the hole (radius and refractive index) that can be utilized to alter the properties of the defect. And this opens up a new method to achieve and tune acceptor-mode cavity. Moving the hole can split the degenerate modes. The departure displacement determines the splitting space and the departure angle determines symmetry of distributions of electric fields. These results exhibit more advantages over the conventional defects and may be utilized to single-mode operation of microcavity laser.
机译:与半导体的杂质水平类似,如果将不规则区域引入完美的光子晶体,则会产生光学腔。光子晶体单缺陷腔预计将获得几乎阈值的激光,因为它可以通过高质量的因素和高自发发射耦合产生波长级小谐振模式。在本文中,我们研究了通过使用超细电池方法在二维三角光子晶体中在通常的缺陷滚筒中钻出圆孔而产生的新型缺陷。杆内的孔通过从缺陷的内部控制介电材料的填充部分和降低缺陷的对称性来极大地改变缺陷模式。发现环形缺陷由于孔(半径和折射率)而提供额外的两个变量,其可用于改变缺陷的性质。这开辟了一种实现和曲调受体模式腔的新方法。移动孔可以分开退化模式。脱离位移确定分裂空间,偏离角度确定电场分布的对称性。这些结果与常规缺陷相比具有更多优点,并且可以用于微腔激光的单模操作。

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