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Controlling the propagating features of light through two-dimensional coupled-cavity photonic crystal waveguides

机译:通过二维耦合腔光子晶体波导控制光的传播特性

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The transmission characteristics of the electromagnetic waves through the coupled-resonator optical waveguides based on the two-dimensional oval-rod photonic crystals are studied by the finite-difference time-domain method. The simulated results show that the guided mode region can be controlled by partially changing the circular rods with oval rods adjacent to the cavities, and the oval rods' rotating angles are set to be different. When the rotation angle of the oval rods around one cavity is different from the rotation angle of the oval rods around the adjacent cavities, the group velocities of the guided modes can be greatly reduced and high efficiency of light transmission is insured. And the information of different frequencies can be shared and chosen at the same time by the waveguide branch based on the above structures.
机译:利用时域有限差分法研究了电磁波通过二维椭圆杆光子晶体的耦合谐振器光波导的传输特性。仿真结果表明,可以通过将圆形杆的一部分改为与空腔相邻的椭圆形杆来控制引导模式区域,并且将椭圆形杆的旋转角度设置为不同。当椭圆形杆围绕一个腔的旋转角度与椭圆形杆围绕相邻腔的旋转角度不同时,可以极大地减小引导模式的群速度,并且可以确保高的光传输效率。基于上述结构,波导分支可以同时共享和选择不同频率的信息。

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