Chinese Optics Letters, Volume. 19, Issue 9, 091202(2021)
Reconstruction of Fabry–Perot cavity interferometer nanometer micro-displacement based on Hilbert transform
[1] Y. Y. Yang, Y. X. Zhang, Z. H. Liu, J. Yang, L. B. Yuan. Twin-core fiber-based sensor for measuring the strain and bending simultaneously. International Symposium on Photoelectronic Detection and Imaging 2013: Fiber Optic Sensors and Optical Coherence Tomography(2013).
[2] A. D. Kersey, D. A. Jackson, M. Corke. A simple fiber Fabry–Perot sensor. Opt. Commun., 45, 71(1983).
[3] Z. G. Wang, W. T. Zhang, J. Han, W. Z. Huang, F. Li. Simplified design of diaphragm-based fiber optic extrinsic Fabry–Perot accelerometer. Proc. SPIE, 9274, 927417(2014).
[4] X. K. Yu, N. F. Song, J. M. Song. A novel method for simultaneous measurement of temperature and strain based on EFPI/FBG. Opt. Commun., 459, 6(2020).
[5] Y. G. Liu, D. Q. Yang, Y. X. Wang, T. Zhang, M. Shao, D. K. Yu, H. W. Fu, Z. N. Jia. Fabrication of dual-parameter fiber-optic sensor by cascading FBG with FPI for simultaneous measurement of temperature and gas pressure. Opt. Commun., 443, 166(2019).
[6] H. Li, Q. Zhao, S. Jiang, J. Ni, C. Wang. FP cavity and FBG cascaded optical fiber temperature and pressure sensor. Chin. Opt. Lett., 17, 040603(2019).
[7] E. Kendir, S. Yaltkaya. Variations of magnetic field measurement with an extrinsic Fabry–Perot interferometer by double-beam technique. Measurement, 151, 107217(2020).
[8] L. C. Zhang, Y. Jiang, J. S. Jia, P. Wang, S. M. Wang, L. Jiang. Fiber-optic micro vibration sensors fabricated by a femtosecond laser. Opt. Lasers Eng., 110, 207(2018).
[9] K. Tian, J. Yu, X. Wang, H. Zhao, D. Liu, E. Lewis, G. Farrell, P. Wang. Miniature Fabry–Perot interferometer based on a movable microsphere reflector. Opt. Lett., 45, 787(2020).
[10] Z. Qu, P. Lu, Y. Li, X. Fu, W. Zhang, D. Liu, J. Zhang. Low-frequency acoustic Fabry–Pérot fiber sensor based on a micromachined silicon nitride membrane. Chin. Opt. Lett., 18, 101201(2020).
[11] K. A. Murphy, M. F. Gunther, A. M. Vengsarkar, R. O. Claus. Quadrature phase-shifted, extrinsic Fabry–Perot optical fiber sensors. Opt. Lett., 16, 273(1991).
[12] H. C. Seat, E. Ouisse, V. Metivier. Demonstration of a dual-cavity extrinsic fiber Fabry–Perot interferometer for vibration displacement measurements. Proceedings of SPIE the International Society for Optical Engineering(2002).
[13] W. Xia, C. Li, H. Hao, Y. Wang, X. Ni, D. Guo, M. Wang. High-accuracy vibration sensor based on a Fabry–Perot interferometer with active phase-tracking technology. Appl. Opt., 57, 659(2018).
[14] H. Liao, P. Lu, L. Liu, D. M. Liu, J. S. Zhang. Phase demodulation of Fabry–Perot interferometer-based acoustic sensor utilizing tunable filter with two quadrature wavelengths. Proc. SPIE, 10110, 101101J(2017).
[15] M. F. Domingues, C. Tavares, N. Alberto, A. Radwan, P. Andre, P. Antunes. High rate dynamic monitoring with Fabry–Perot interferometric sensors: an alternative interrogation technique targeting biomedical applications. Sensors, 19, 4744(2019).
[16] A. D. Gomes, M. S. Ferreira, J. Bierlich, J. Kobelke, M. Rothhardt, H. Bartelt, O. Frazo. Optical harmonic Vernier effect: a new tool for high performance interferometric fibre sensors. Sensors, 19, 5431(2019).
[17] C. Zhu, Y. Z. Chen, Y. Du, Y. Y. Zhuang, F. X. Liu, R. E. Gerald, J. Huang. A displacement sensor with centimeter dynamic range and submicrometer resolution based on an optical interferometer. IEEE Sens. J., 17, 5523(2017).
[18] M. R. Islam, M. M. Ali, M. H. Lai, K. S. Lim, H. Ahmad. Chronology of Fabry–Perot interferometer fiber-optic sensors and their applications: a review. Sensors, 14, 7451(2014).
[19] S. Pullteap, H. C. Seat. An extrinsic fiber Fabry–Perot interferometer for dynamic displacement measurement. Photon. Sens., 5, 50(2014).
[20] L. Yuan, L. Zhou. Fiber optic differential interferometer. IEEE Trans. Instrum. Meas., 49, 779(2000).
[21] T. Ito. Precise measurement of the change in the optical length of a fiber-optic Fabry–Perot interferometer. Appl. Opt., 25, 1072(1986).
[22] Z. Zhang, C. Li, Z. Huang. Vibration measurement based on multiple Hilbert transform for self-mixing interferometry. Opt. Commun., 436, 192(2019).
Get Citation
Copy Citation Text
Hongwei Liang, Yu Sun, Zhen Huang, Chunlei Jiang, Zihua Zhang, Lingling Kan, "Reconstruction of Fabry–Perot cavity interferometer nanometer micro-displacement based on Hilbert transform," Chin. Opt. Lett. 19, 091202 (2021)
Category: Instrumentation, Measurement, and Optical Sensing
Received: Dec. 24, 2020
Accepted: Mar. 3, 2021
Published Online: Jun. 15, 2021
The Author Email: Chunlei Jiang (jiangchunlei_nepu@163.com), Lingling Kan (kll@nepu.edu.cn)