徐志林
- [7] Yanpeng Li, Zhilin Xu, Shijie Tan, Fang Fang, Liuyang Yang, Botai Yuan, and Qizhen Sun. Recent advances in microfiber sensors for highly sensitive biochemical detection. Journal of Physics D: Applied Physics, 52, 493002 (2019);.
- [6] Zihao Wang, Zhilin Xu*, Liuyang Chen, Yi Shi, Xiaoyun Wang, Junhui Wu, Ji Fan, and Liangcheng Tu. Highly precise in-plane displacement sensor based on an asymmetric fiber Fabry–Perot interferometer. Optics Letters, 46, 3945-3948 (2021);.
- [5] Hao Yan, Liuyang Chen, Zhilin Xu, Xiang Lin, and Yurong Liang. All-fiber heterodyne velocity and displacement interferometer based on DPLL Doppler tracking with sub-nanometer per second and picometer sensitivity. Applied Optics, 61, 9569-9575 (2022);.
- [4] Zhilin Xu*, Zihao Wang, Liuyang Che, Ji Fan, and Liangcheng Tu. Two-dimensional displacement sensor based on a dual-cavity Fabry-Perot interferometer. Journal of Lightwave Technology, 40, 1195-1201 (2022);.
- [3] Qi Xia, Yu-Rong Liang, Hao Yan, Zhi-Lin Xu, Li Liu, and Ze-Bing Zhou. High-precision laser beam lateral displacement measurement based on differential wavefront sensing. Optics Letters, 48, 5281-5284 (2023);.
- [2] Junhui Wu, Zhilin Xu*, Yixiang Zhang, Yurong Liang, Qizhen Sun, and Zebing Zhou. High-resolution two-degrees of freedom displacement measurement based on fiber Fabry-Perot interferometer and Pound–Drever–Hall technique. IEEE Sensors Journal, 23, 16859-16865 (2023);.
- [1] Yi Shi, Zhilin Xu*, Junhui Wu, Liuyang Chen, Yurong Liang, Qizhen Sun and Zebing Zhou. Ultra-low frequency high-precision displacement measurement based on dual-polarization differential fiber heterodyne interferometer. Journal of Lightwave Technology, 41, 5773-5779 (2023);.