Infrared and Laser Engineering, Volume. 50, Issue 4, 20200111(2021)

Powerful iodine stabilized He-Ne laser as wavelength reference

Jianbo Wang, Cong Yin*, Chunying Shi, Hanping Wang, Shan Cai, and Hui Shu
Author Affiliations
  • National Institute of Metrology, Beijing 100013, China
  • show less
    References(13)

    [1] Quinn T J. Practical realization of the definition of the metre, including recommended radiations of other optical frequency standards (2001)[J]. Metrologia, 40, 103-133(2003).

    [2] Pisani M, Yacoot A, Balling P, et al. Comparison of the performance of the next generation of optical interferometers[J]. Metrologia, 49, 455-467(2012).

    [3] Orr B J, He Y. Rapidly swept continuous-wave cavity-ringdown spectroscopy[J]. Chemical Physics Letters, 512, 1-20(2011).

    [4] Wu S, Feng J, Li C, et al. The results of CCM.G-K2.2017 key comparison[J]. Metrologia, 57, 07002(2020).

    [5] Michael M, Petr B, Petr K, et al. The CCL-K11 ongoing key comparison: final report for the year 2010[J]. Metrologia, 48, 04001(2011).

    [6] Didier A, Ignatovich S, Benkler E, et al. 946-nm Nd:YAG digital-locked laser at 1.1×10−16 in 1 s and transfer-locked to a cryogenic silicon cavity[J]. Optics Letters, 44, 1781-1784(2019).

    [7] Morzynski P, Wcislo P, Ablewski P, et al. Absolute frequency measurement of rubidium 5S-7S two-photon transitions[J]. Optics Letters, 38, 4581-4584(2013).

    [8] Petru F, Popela B, Vesela Z. Design and performance of compact iodine stabilized He-Ne lasers at lambda =633 nm with a short optical resonator[J]. Measurement Science and Technology, 4, 506(1993).

    [9] Chartier J M, Labot J, Sasagawa G, et al. A portable iodine stabilized He-Ne laser and its use in an absolute gravimeter[J]. Instrumentation and Measurement, IEEE Transactions on, 42, 420-422(1993).

    [10] Ishikawa J. Portable national length standards designed and constructed using commercially available parts: An advanced mechanical design for the iodine stabilized He-Ne laser[J]. Synthesiology (English Edition), 2, 246-257(2010).

    [11] Qian J, Liu Z Y, Zhang X P, et al. A new type of iodne stabilized He-Ne laser at 633 nm[J]. Acta Metrologica Sinica, 29, 10-13(2008).

    [12] Tian W, Zhang W M, Qian J, et al. Test result of the NIM frequency stabilized laser on the FG5-112 absolute gravimeter[J]. Journal of Geodesy and Geodynamics, 35, 1057-1059(2015).

    [13] Wallard A J. Frequency stabilization of the helium-neon laser by saturated absorption in iodine vapour[J]. Journal of Physics E: Scientific Instruments, 5, 926-930(1972).

    CLP Journals

    [1] 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

    [2] Yusen Liu, Jianbo Wang, Cong Yin, Shaokun Han, Wenwen Bi, Qiuye Yu, Jinpeng Zou. Frequency stabilization method of optical phase-locked loop He-Ne laser based on acousto-optic modulator[J]. Infrared and Laser Engineering, 2024, 53(3): 20240003

    Tools

    Get Citation

    Copy Citation Text

    Jianbo Wang, Cong Yin, Chunying Shi, Hanping Wang, Shan Cai, Hui Shu. Powerful iodine stabilized He-Ne laser as wavelength reference[J]. Infrared and Laser Engineering, 2021, 50(4): 20200111

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: Lasers & Laser optics

    Received: Nov. 7, 2020

    Accepted: --

    Published Online: Jul. 30, 2021

    The Author Email: Cong Yin (yincong@nim.ac.cn)

    DOI:10.3788/IRLA20200111

    Topics