周 扬,卜乐平,王黎明,胡致远,杨娅姣.电光晶体的 Pockels 效应仿真研究[J].电子测量与仪器学报,2021,35(7):123-129
电光晶体的 Pockels 效应仿真研究
Simulation research on pockels effect of electro-optic crystal
  
DOI:
中文关键词:  电光晶体  光学电压传感器  Pockels 效应  有限元分析  光波场仿真
英文关键词:electro-optic crystal  optical voltage sensor  pockels effect  finite element analysis  light wave field simulation
基金项目:国家自然科学基金(41774021,41974005)项目资助
作者单位
周 扬 1. 海军工程大学 电气工程学院 
卜乐平 1. 海军工程大学 电气工程学院 
王黎明 1. 海军工程大学 电气工程学院 
胡致远 1. 海军工程大学 电气工程学院 
杨娅姣 2. 中国航天电子技术研究院 北京航天时代光电科技有限公司 
AuthorInstitution
Zhou Yang 1. College of Electrical Engineering, Naval University of Engineering 
Bu Leping 1. College of Electrical Engineering, Naval University of Engineering 
Wang Liming 1. College of Electrical Engineering, Naval University of Engineering 
Hu Zhiyuan 1. College of Electrical Engineering, Naval University of Engineering 
Yang Yajiao 2. Beijing Aerospace Times Optoelectronics Technology Co. , Ltd, China Academy of Aerospace Electronic Technology 
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中文摘要:
      结合麦克斯韦方程组建立了光在电光晶体中传播的数学模型;通过有限元仿真分别建立了铌酸锂晶体和锗酸铋晶体的 物理参数模型,提出了一种通用的入射光三维波动场仿真方法,该方法将晶体内部电场分布和电光效应耦合波理论相结合,计 算了在横向调制下两种晶体的 Pockels 效应,其结果与理论差值在 10 -5 数量级内;同时,仿真结果表明,铌酸锂晶体的 Pockels 效应更为明显。 最后对两种不同材质的电光晶体进行了 0~ 1 000 V 直流加压实验,实验表明铌酸锂晶体的 Pockels 效应测量精 度优于±2. 9%。 该方法为光学电压传感器电光晶体的选择和性能评估提供了新的研究思路与理论参考。
英文摘要:
      Combined with Maxwell’ s equations, a mathematical model of light propagation in electro-optic crystals was established; physical parameter models of lithium niobate crystal and bismuth germanate crystal were established through finite element simulation, and a universal three-dimensional wave field simulation method of incident light was proposed. This method combines the electric field distribution inside the crystal with the coupled wave theory of the electro-optic effect, and calculates the Pockels effect of the two crystals under transverse modulation. The difference between the results and the theory is within 10 -5 orders of magnitude; at the same time, the simulation results show that the Pockels effect of lithium niobate crystals is more obvious. Finally, 0 ~ 1 000 V DC voltage experiments are carried out on two electro-optic crystals of different materials. The experiment shows that the measurement accuracy of the Pockels effect of the lithium niobate crystal is better than ±2. 9%. This method provides new research ideas and theoretical references for the selection and performance evaluation of electro-optic crystals for optical voltage sensors.
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