Overcome the Interference between Si rods based Add Drop Filter using Two-dimensional PCRR

P. Inaniya, Ekta Kumari, M. Kuri
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Abstract

In this work, a novel optical Add-drop filter is designated on the essence of coupling betwixt the PCRR and waveguide. Its simulation process has been carried out through 2-D finite difference time domain method (FDTD). The plane wave expansion method is exploited for investigation of Band gap of proposed structure. The Proposed structure comprised silicon rods and rectangular lattice having index of refraction 3.47 Results demonstrates that 100% dropping efficiency at 1590 nm through waveguide afterwards optimization. The size of ring is also essence the ring resonator and its parameters.
利用二维PCRR克服硅棒间的干扰
本文利用PCRR与波导耦合的本质,设计了一种新型的光学加降滤波器。通过二维时域有限差分法(FDTD)对其进行了仿真。利用平面波展开法对所提出结构的带隙进行了研究。该结构由硅棒和矩形晶格组成,折射率为3.47。结果表明,优化后的波导在1590 nm处的下降效率为100%。环形谐振器的大小也是环形谐振器及其参数的本质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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