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All-optical non-gate and NOR gate design of two-dimensional photonic crystal ring resonator

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【作者】 严清博吴蓉刘振张璐瑶

【Author】 YAN Qing-bo;WU Rong;LIU Zhen;ZHANG Lu-yao;School of Electronic and Information Engineering, Lanzhou Jiaotong University;

【通讯作者】 吴蓉;

【机构】 School of Electronic and Information Engineering, Lanzhou Jiaotong University

【摘要】 The article provides a design of all-optical non-gate and NOR gate based on two-dimensional photonic crystal ring resonator structure. This design extracts the energy band structure of two-dimensional photonic crystals by plane wave expansion method and analyzes the steady-state electric field distribution of the device structure by the finite-time-domain difference method. The results demonstrate that the non-gate and NOR gate can achieve logic functions with a response period of 0.388 ps, a contrast ratio of 8.98 d B and 7.88 d B. The high extinction ratio and small structure sizes which are only 15.2 μm×15.2 μm and 13.984 μm×24.928 μm also contribute to convenient integration. The design with ring resonator makes optical logic gate devices more diverse, providing a basis for the optimal design of integrated circuits, and it also has important application research value.

【Abstract】 The article provides a design of all-optical non-gate and NOR gate based on two-dimensional photonic crystal ring resonator structure. This design extracts the energy band structure of two-dimensional photonic crystals by plane wave expansion method and analyzes the steady-state electric field distribution of the device structure by the finite-time-domain difference method. The results demonstrate that the non-gate and NOR gate can achieve logic functions with a response period of 0.388 ps, a contrast ratio of 8.98 d B and 7.88 d B. The high extinction ratio and small structure sizes which are only 15.2 μm×15.2 μm and 13.984 μm×24.928 μm also contribute to convenient integration. The design with ring resonator makes optical logic gate devices more diverse, providing a basis for the optimal design of integrated circuits, and it also has important application research value.

【基金】 supported by the Gansu Natural Science Foundation(No.1610RJZA046)
  • 【文献出处】 Optoelectronics Letters ,光电子快报(英文版) , 编辑部邮箱 ,2020年02期
  • 【分类号】TN751.2;O734
  • 【下载频次】52
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