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Investigation of 2D Photonic Crystal Structure based Channel Drop Filter using Quad Shaped Photonic Crystal Ring Resonator for CWDM System

机译:基于光子晶体结构基于Quad形光子晶体环谐振器的CWDM系统研究

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In this paper, the design & performance of two dimensional (2-D) photonic crystal structure based channel drop filter is investigated using quad shaped photonic crystal ring resonator. In this paper, Photonic Crystal (PhC) based on square lattice periodic arrays of Gallium Indium Phosphide (GaInP) rods in air structure have been investigated using Finite Difference Time Domain (FDTD) method and photonic band gap is being calculated using Plane Wave Expansion (PWE) method. The PhC designs have been optimized for telecommunication wavelength λ=1571 nm by varying the rods lattice constant. The number of rods in Z and X directions is 21 and 20, with lattice constant 0.540 nm it illustrates that the arrangement of Gallium Indium Phosphide (GaInP) rods in the structure which gives the overall size of the device around 11.4 μm x 10.8 μm. The designed filter gives good dropping efficiency using 3.298, refractive index. The designed structure is useful for CWDM systems. This device may serve as a key component in photonic integrated circuits. The device is ultra compact with the overall size around 123 μm~2.
机译:在本文中,研究了二维(2-D)光子晶体结构基于Quad形光子晶环谐振器的沟道掉滤波器的设计和性能。本文采用有限差分时域(FDTD)方法研究了基于方形晶格周期性磷化镓(GAP)的砷化镓(GAINP)棒的光子晶体(PHC),并使用平面波膨胀计算光带隙( PWE)方法。通过改变杆晶格常数,对电信波长λ= 1571nm进行了优化了PHC设计。 Z和X方向上的杆的数量为21和20,晶格常数0.540nm表示,镓铟磷化铟铟(GaInP)棒在结构中的整体尺寸约为11.4μm×10.8μm。设计过滤器使用3.298,折射率提供良好的滴加效率。设计的结构对于CWDM系统非常有用。该设备可以用作光子集成电路中的关键组件。该装置的超紧凑,总体大小约为123μm〜2。

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