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Modulating electromagnetic properties in three-dimensional diamond-structured photonic crystals with double planar defects

机译:用双平面缺陷调节三维金刚石结构光子晶体中的电磁特性

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Three-dimensional (3D) diamond structure photonic crystals (PhCs) with planar defects were fabricated with alumina using 3D printing combining gel casting, sintering process, and vacuum freezing-dry technique. In this article, the influences of twinned planar defect and the positions of planar defect in a single lattice period on the transmission properties of the electromagnetic wave (EM) in the PhCs is studied. The normalized resonant intensities are 0.5 for twinned planar defected photonic crystals (PhCs). When the planar defect position lies in the nonkey positions (key position is n*(a/4)), the band gap becomes narrow and the resonant peak disappears. When the twinned planar defected with different interval periods is integer, obvious resonant peaks can be found in the EM band gap of the planar defects PhCs with 2 and 3 symmetrical periods. When a PhC with two planar defects is constructed, its band gap width increases and the resonant peaks intensities decrease.
机译:三维(3D)金刚石结构光子晶体(PHCS)用氧化铝使用3D印刷组合凝胶铸造,烧结过程和真空冷冻干燥技术制造了平面缺陷。 在本文中,研究了对孪晶平面缺陷的影响和平面缺陷在PHC中电磁波(EM)的传动特性的影响。 对于孪晶平面缺点的光子晶体(PHC),归一化的共振强度为0.5。 当平面缺陷位置位于非视位置(键位置是N *(A / 4))时,带隙变窄,谐振峰消失。 当用不同间隔周期叛徒的孪晶平面是整数时,在平面的EM带隙中可以找到明显的共振峰值,该PHC具有2和3个对称时段的PHC。 当构造具有两个平面缺陷的PHC时,其带隙宽度增加并且谐振峰强度降低。

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