影像科学与光化学 ›› 2020, Vol. 38 ›› Issue (1): 15-21.DOI: 10.7517/issn.1674-0475.190713

• 综述与论文 • 上一篇    下一篇

光子晶体非线性效应全光开关研究

郭延, 朱建峰, 张含, 冯云鹏, 程灏波   

  1. 北京理工大学 深圳研究院, 广东 深圳 518057
  • 收稿日期:2019-07-19 出版日期:2020-01-15 发布日期:2020-01-15
  • 基金资助:
    深圳市科技创新计划资助项目(JCYJ20170817114937658,JCYJ20180307123639612)资助

Research on All-optical Switch Based on Nonlinear Effect of Photonic Crystal

GUO Yan, ZHU Jianfeng, ZHANG Han, FENG Yunpeng, CHENG Haobo   

  1. Shenzhen Research Institute, Beijing Institute of Technology, Shenzhen 518057, Guangdong, P. R. China
  • Received:2019-07-19 Online:2020-01-15 Published:2020-01-15

摘要: 全光化以其快速传输处理信息的优点已成为当前的研究热点,其中全光开关在全光化中发挥着重要作用。本文利用平面波展开法与超原胞技术相结合的方法,对光子晶体结构的能带分布进行了研究,并对其禁带特性进行了分析,确定了以四方晶系为结构基础进行全光开关的设计研究。此外,在四方晶系结构基础上设计了波导与谐振腔耦合的全光开关结构,利用时域有限差分法进行模拟仿真,对电磁场分布图进行了研究。并在此基础上对结构进行了设计优化,使开关的性能得到提升。通过对光子晶体禁带特性的研究和对全光开关的仿真结果的分析,本文证实基于光子晶体的非线性克尔效应可以设计出开关性能较为优异的全光开关结构,并可减小全光开关的尺寸和反应时间。

关键词: 全光开关, 光子晶体, 克尔效应, 平面波展开法, 时域有限差分法

Abstract: The advantages of all-opticalization with its fast transmission processing have become the current research hotspot. Among them, all-optical switches play an important role in all-optolight. In this paper, the energy band of photonic crystal structure is calculated by plane wave expansion method and super-cell technology, and the forbidden band characteristics are analyzed. Through the analysis of the energy band characteristics of several photonic crystals, the design research of all-optical switch based on tetragonal crystal structures is determined. Based on the tetragonal system structure, the 15 all-optical switch structure with waveguide and cavity coupling is designed. The time domain finite difference method is used to simulate the electromagnetic field distribution map. On the basis of this, the structure was optimized and the performance of the switch was slightly improved. By studying the forbidden band characteristics of photonic crystals and analyzing the simulation results of all-optical switches, it can be determined that the nonlinear Kerr effect based on photonic crystals can design an all-optical switch structure with excellent switching performance and reduce the size and reaction time of all-optical switch.

Key words: all-optical switch, photonic crystal, Kerr effect, plane wave expansion method, time domain finite difference method