[1] Li Yongqian, Meng Xiangteng, An Qi, et al. Design and implementation of electro-optic modulator adaptive polarization control system[J]. Infrared and Laser Engineering, 2015, 44(6):1854-1858. (in Chinese)
[2] Xing J, Li Z, Zhou P, et al. Compact silicon-on-insulator-based 22 Mach-Zehnder interferometer electro-optic switch with low crosstalk[J]. Chinese Optics Letters, 2015, 13(6):061301.
[3] Li Kewu, Wang Zhibin, Zhang Rui, et al. LiNbO3 transverse electro-optical modulation characteristics for light pass along optical axis[J]. Optics and Precision Engineering, 2015, 23(5):1227-1232. (in Chinese)
[4] Li Kewu, Wang Liming, Wang Zhibin, et al. Phase-modulated ellipsometry combined photo-elastic modulation with electro-optic modulation[J]. Optics and Precision Engineering, 2016, 24(4):690-697. (in Chinese)
[5] Li H, Cui L, Wang X, et al. Analysis and design of loop gains to optimize the dynamic performance of optical voltage sensor based on pockels effect[J]. Journal of Lightwave Technology, 2015, 33(14):3108-3115.
[6] Wen Haiyan, Lei Linxu, Zhang Chaoyang, et al. Research situation and design of optical voltage transducer based on pockels effect[J]. Smart Grid, 2013, 1(2):58-64. (in Chinese)
[7] Li Changsheng, Wang Weiqi. Review of optical voltage sensor based on electroluminescent effect[J]. Chinese Optics, 2016, 9(1):30-40. (in Chinese)
[8] Xie Kecheng. Analysis of stability for linear electrooptical effect of Bi4Ge3O12 crystal[J]. Piezoelectrics Acoustooptics, 1990, 12(4):46-51. (in Chinese)
[9] Williams P A, Rose A H, Lee L S, et al. Optical, thermo-optic, electro-optic, and photoelstic properties of bismuth germinate (Bi4Ge3O12)[J]. Applied Optics, 1996, 35(19):3562-3569.
[10] Xiang Tian, Jin Xi, Dong Jianing, et al. Design of fluorescence simulator with large dynamic range for scintillation crystal[J]. Optics and Precision Engineering, 2014, 22(2):304-310. (in Chinese)
[11] Tan Qiao, Xu Qifeng, Xie Nan, et al. Quantitative research on the intrinsic linear birefringence and temperature characteristic of BGO crystal[J]. Infrared and Laser Engineering, 2016, 45(6):247-252. (in Chinese)
[12] Santos J C, Taplamacioglu M C, Hidaka K. Pockels high-voltage measurement system[J]. IEEE Transactions on Power Delivery, 2000, 15(1):8-12.
[13] Tan Q, Xu Q F, Chen L Y, et al. A new method to improve internal electric field distributions of pockels OVS[J]. IEEE Sensors Journal, 2017, 17(13):4115-4121.
[14] Huang Yifan, Xu Qifeng, Chen Linyang, et al. Medium enwrapping method for improving internal electric field distribution of OVT[J]. Infrared and Laser Engineering, 2017, 46(7):0722004. (in Chinese)
[15] Lee K S. New compensation method for bulk optical sensors with multiple birefringences[J]. Applied Optics, 1989, 28(11):2001-2011.
[16] She W L, Lee W K. Wave coupling theory of linear electrooptic effect[J]. Optics Communications, 2001, 195(1):303-311.
[17] Zheng G L, Xu J, Chen L X, et al. A thermal design for the potassium titanyl phosphate electrooptical modulator[J]. Applied Optics, 2006, 46(27):6774-6778.
[18] Xie N, Xu Q F, Ma J, et al. Thermally insensitive design for the LiNbO3 electro-optical modulator under dynamic electric field[J]. Journal of Optics, 2014, 16(8):085201.
[19] Qiu xinmao, Ma Jing, Xie Nan, et al. A method of electro-optic device's simulation and analysis in arbitrary direction and arbitrary electric field[J]. Acta Optica Sinica, 2015, 35(12):1223001. (in Chinese)