Infrared and Laser Engineering, Volume. 51, Issue 12, 20220781(2022)
Optimizing optical resonant cavity locking using fuzzy algorithm (invited)
[1] Abramovici A, Althouse W E, Drever R W, et al. LIGO: The laser interferometer gravitational-wave observatory[J]. Science, 256, 325-333(1992).
[2] Ma Lixia, Lei Xing, Yan Jieli, et al. High-performance cavity-enhanced quantum memory with warm atomic cell[J]. Nat Commun, 13, 2368(2022).
[3] Zuo Xiaojie, Yan Zhihui, Feng Yanni, et al. Quantum interferometer combining squeezing and parametric amplification[J]. Physical Review Letters, 124, 173602(2020).
[4] Yan Zhihui, Qin Jiliang, Qin Zhongzhong, et al. Generation of non-classical states of light and their application in deterministic quantum teleportation[J]. Fundamental Research, 1, 43-49(2021).
[5] Abbott B P, Abbott R, Abbottet T D, et al. Observation of gravitational waves from a binary black hole merger[J]. Physical Review Letters, 116, 061102(2016).
[6] Zhou Yaoyao, Jia Xiaojun, Li Fang, et al. Experimental generation of 8.4 dB entangled state with an optical cavity involving a wedged type-II nonlinear crystal[J]. Opt Express, 23, 4952-4959(2015).
[7] Huo Meiru, Qin Jiliang, Sun Yingrong, et al. Generation of intensity difference squeezed state of light at optical fiber communication wavelength[J]. Journal of Quantum Optics, 24, 134-140(2018).
[8] Drever R W P, Hall J L, Kowalski F V, et al. Laser interferometer gravitational radiation detectors[J]. Appl Phys B, 31, 336-342(1983).
[9] Breguet J M, Henein S, Kjelberg I, et al. Tunable extended-cavity diode laser based on a novel flexure-mechanism[J]. Int J Optomechatron, 7, 181-192(2013).
[10] Schlager J B, Callicoatt E E, Mirin R P, et al. Passively mode-locked waveguide laser with low residual jitter[J]. IEEE Photon Technol Lett, 14, 1351-1353(2002).
[11] Wu Yue, Chen Guozhu, Shen Yong, et al. Optical frequency doubling cavity automatic lockingsystem for second harmonic generation[J]. Infrared and Laser Engineering, 45, 0606002(2016).
[12] Meng Xiangran. Experimental study on frequency stabilization of laser based on PID control[J]. Science and Technology Information, 66-67(2013).
[13] Han Jong-Ho. Tracking control of moving sound source using fuzzy-gain scheduling of PID control[J]. Electronics, 9, 14(2019).
[14] Su Xinghua. Design of PID controller based on fuzzy control theory[J]. China Management Information, 22, 136-139(2019).
[15] Yuan Xiuping, Li Heyi. MATLAB-based electro-hydraulic servo system adaptive fuzzy PID simulation[J]. Journal of Shanghai Normal University (Natural Sciences), 35, 43-46(2006).
[16] Li Xin, Li Zong, Zhang Lijuan. The controllerof fuzzy auto-turning PID on line[J]. Electronics Instrumentation Customer, 11, 34-35(2004).
[17] Canuto E, Musso F, Massotti L. Automation and control of Fabry-Perot interferometers[J]. IEEE Trans Ind Electron, 54, 848-857(2007).
Get Citation
Copy Citation Text
Yilu Chen, Yanni Feng, Zhihui Yan, Xiaojun Jia. Optimizing optical resonant cavity locking using fuzzy algorithm (invited)[J]. Infrared and Laser Engineering, 2022, 51(12): 20220781
Category: Invited paper
Received: Oct. 31, 2022
Accepted: --
Published Online: Jan. 10, 2023
The Author Email: