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Design of a polymer photonic crystal membrane cavity for channel drop filtering in coarse wavelength division multiplexing networks

机译:粗波分复用网络中用于信道降滤的聚合物光子晶体膜腔的设计

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A low-cost polymer integrated optical filter for coarse wavelength division multiplexing systems has been modelled, designed and optimized. The device, which can be manufactured by nanoimprinting lithography, is a Fabry-Perot cavity working at 1551 nm and consisting of a membrane-type slab photonic crystal in which a hole row perpendicular to the propagation direction is removed to form the two reflectors. The dependence of the resonator performance on the key geometrical parameters, i.e. the hole radius and the defect length, has been investigated by the finite element method. A good agreement between the requirements due to the specific application and the device performance has been obtained. The optimized filter, with a footprint of 43.7 µm2, has a Q-factor of 115 and a resonance transmission > 50%.
机译:一种用于粗波分复用系统的低成本聚合物集成光学滤波器已经过建模,设计和优化。该器件可以通过纳米压印光刻技术制造,是一种工作在1551 nm的Fabry-Perot腔,它由膜型平板光子晶体组成,其中垂直于传播方向的孔排被去除以形成两个反射器。已经通过有限元方法研究了谐振器性能对关键几何参数即孔半径和缺陷长度的依赖性。在因特定应用而产生的要求与设备性能之间已经获得了良好的协议。经过优化的滤波器的占位面积为43.7 µm 2 ,Q值为115,共振透射率> 50%。

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