Infrared and Laser Engineering, Volume. 54, Issue 5, 20240463(2025)

Research on digital control method for 633 nm iodine stabilized wavelength standard

Mingda CHU1...2, Bo TANG1, Jianbo WANG2, Cong YIN2, Wenwen BI2, Mingyu ZHANG2, Zhirang YANG1,2, Yixuan ZHU2, Jing ZHANG1,2 and Ming KONG1 |Show fewer author(s)
Author Affiliations
  • 1College of Metrology & Measurement Instrumentation, China Jiliang University, Hangzhou 310018, China
  • 2National Institute of Metrology, Beijing 100029, China
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    References(23)

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    [3] Jinpeng ZOU, Cong YIN, Jianbo WANG et al. Review on 633 nm iodine-stabilized helium-neon lasers. Metrology Science and Technology, 68, 95-100, 9(2024).

    [6] I HIRANO, J ISHIKAW, H IWAO et al. Digitalization of the control system for the iodine stabilized He-Ne laser. Ieej Transactions on Sensors & Micromachines, 126, 208-209(2006).

    [7] Z M WEI, G F LU, K Y YANG et al. A digital intensity stabilization system for HeNe laser. Optics & Laser Technology, 44, 63-66(2012).

    [8] [8] LIU Z H, HU Z H, QI L, et al. A digital frequency stabilization system of external cavity diode laser based on LabVIEW FPGA[C]Applied Optics Photonics China, 2015, 9671: 96711B.

    [9] Yingying LI, Zhikun JIANG, Anqi WANG. Digital control system for higher laser power stability. Infrared and Laser Engineering, 45, 143-147(2016).

    [10] Jinpeng ZOU, Cong YIN, Jianbo WANG et al. 633 nm iodine-stabilized laser based on analog-digital hybrid control method. Chinese Journal of Lasers, 51, 1-15(2024).

    [12] Lu LI, Peng ZHUANG, Chenbo XIE et al. Laser frequency stabilization technology using temperature control and iodine absorption cell technology. Infrared and Laser Engineering, 50, 20200289(2021).

    [15] H NOH. Effect of optical pumping in saturated absorption spectroscopy: An analytic study for two-level atoms. European journal of physics, 30, 1181-1187(2009).

    [16] Jianbo WANG, Cong YIN, Chunying SHI et al. Powerful iodine stabilized He-Ne laser as wavelength reference. Infrared and Laser Engineering, 50, 20200111(2021).

    [18] Jin QIAN, Zhongyou LIU, Xiaoping ZHANG et al. A novel iodine-stabilized 633nm He-Ne laser system. Acta Metrologica Sinica, 29, 10-13(2008).

    [19] Hui ZHANG, Yuexiang PENG, Erjun ZANG et al. Studies on the hyperfine structures of I2 absorption line with third harmonic frequency stabilization in Nd: YVO4-KTP ring laser. Spectroscopy and Spectral Analysis, 25, 641-643(2005).

    [20] K TANAKA, T SAKURAI, T KUROSAWA et al. Frequency stabilization of the He-Ne laser by means of saturated absorption in iodine. Transactions of the institute of Measurement and Control Engineers, 10, 669-674(1974).

    [22] Juntong ZHAN, Qiang FU, Jin DUAN et al. Stability improvement of DFB laser driving power using digital position PID algorithm. Infrared and Laser Engineering, 44, 1757-1761(2015).

    [23] P PRAJAPAT, A MANDLOI. Performance analysis of discrete and fuzzy PID controller. Fuzzy Systems, 6, 65-67(2014).

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    Mingda CHU, Bo TANG, Jianbo WANG, Cong YIN, Wenwen BI, Mingyu ZHANG, Zhirang YANG, Yixuan ZHU, Jing ZHANG, Ming KONG. Research on digital control method for 633 nm iodine stabilized wavelength standard[J]. Infrared and Laser Engineering, 2025, 54(5): 20240463

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    Paper Information

    Category: 光电测量

    Received: Oct. 10, 2024

    Accepted: --

    Published Online: May. 26, 2025

    The Author Email:

    DOI:10.3788/IRLA20240463

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