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平面环形谐振腔微光学陀螺结构设计与优化
引用本文:刘俊,张天恩,张伟,雷龙海,薛晨阳,张文栋,唐军. 平面环形谐振腔微光学陀螺结构设计与优化[J]. 物理学报, 2015, 64(10): 107802-107802. DOI: 10.7498/aps.64.107802
作者姓名:刘俊  张天恩  张伟  雷龙海  薛晨阳  张文栋  唐军
作者单位:中北大学, 仪器科学与动态测试教育部重点实验室, 电子测试技术重点实验室, 太原 030051
基金项目:国家自然科学基金重点项目(批准号: 91123036)、国家杰出青年科学基金(批准号: 51225504)、国家自然科学基金(批准号: 91123016, 61178058, 61275166)、国家重点基础研究发展计划前期研究专项项目(批准号: 2012CB723404)和山西省青年学术带头人支持项目资助的课题.
摘    要:提出具有高群有效折射率的双环级联作为核心元件的谐振式平面光波导陀螺结构, 基于光学Sagnac原理得到了双微环耦合谐振式光学陀螺理论灵敏度与群有效折射率的一般表达式和双环与单环陀螺系统的灵敏度关系, 并由耦合模理论方法得到了双环系统耦合器的两个透射系数对应的群有效折射率变化情况. 在环腔半径R1=R2=100 μm、环腔传输损耗系数t1=t2=0.95的情况下, 针对环与环之间耦合器和环与波导之间耦合器透射系数对群有效折射率的不同影响, 得到了最大群有效折射率的产生条件. 采用文中参数(R=100 μm, t=0.95)计算的单环谐振式陀螺灵敏度为(104-105)°/h, 而双环级联谐振系统理论灵敏度能够达到10 °/h. 该研究对微环耦合谐振腔在角速度检测上的应用有重要的意义.

关 键 词:谐振式光学陀螺  群有效折射率  双环耦合  透射系数
收稿时间:2014-11-25

Design and optimization of integrated micro optical gyroscope based on a planar ring resonator
Liu Jun,Zhang Tian-En,Zhang Wei,Lei Long-Hai,Xue Chen-Yang,Zhang Wen-Dong,Tang Jun. Design and optimization of integrated micro optical gyroscope based on a planar ring resonator[J]. Acta Physica Sinica, 2015, 64(10): 107802-107802. DOI: 10.7498/aps.64.107802
Authors:Liu Jun  Zhang Tian-En  Zhang Wei  Lei Long-Hai  Xue Chen-Yang  Zhang Wen-Dong  Tang Jun
Affiliation:Key Laboratory of Instrumentation Science and Dynamic Measurement Ministry of Education of China, Science and Technology on Electronic Test and Measurement Laboratory, North University of China, Taiyuan 030051, China
Abstract:In order to optimize the performance of the coupled resonator optical waveguide (CROW) gyroscope, a well-designed structure by optimizing the ring number and the transmission coefficient of the coupler is used as the core component of the planar waveguide optical gyroscope. The structure with double coupled ring resonator may possess large effective group refractive index to enhance angular sensing sensitivity was proposed. The concept of the Sagnac effect in this new double coupled ring resonator structure with a large effective group refractive index is investigated, it’s found that the rotation-induced phase shift is proportional to the effective group refractive index. On the basis of this effect, we calculate the general relation expression of theoretical rotation sensitivity and the effective group refractive index for this two-ring bidirectional CROW gyroscope by numerically simulation. Based on the relation, the phase shift characteristics of double coupled ring resonator and single ring resonator was analyzed. And the changing characteristics of the transmission coefficient of the couplers and the effective group refractive index was discussed based on the double cascaded ring resonator coupling mode theory. In the case of R1=R2=100 μm and ring transmission loss coefficient t1=t2=0.95, the generating condition of the largest effective group refractive index was obtained, according to the different effects of the couplers between rings and waveguide on the effective group refractive index. By using the parameters of R=100 μm and t=0.95, the sensitivity of a single ring resonator gyroscope is (104-105) °/h, and the sensitivity of double coupled ring resonator gyroscope can reach to 10 °/h. In summary, we show that the theoretical sensitivity of the double coupled ring gyroscope and single ring gyroscope are comparable when both have the same parameters. Using numerical and analytical methods, we demonstrated that coupling multiple resonators together can enhance rotation sensitivity. This research is important for applications of coupled ring resonator in optical angular velocity detection, and a promising regime to realize highly compact optical gyroscope.
Keywords:resonator optical gyroscope  effective group refractive index  double coupled ring  transmission coefficient
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