Journal of Applied Optics, Volume. 45, Issue 5, 1042(2024)

Development of visible near-infrared wavelength reference materials

Zhenyuan ZHANG1,2, Xinhua CHEN1、*, Guojin FENG2、**, Qiaoxiang ZHANG2, and Chundi ZHENG2
Author Affiliations
  • 1Beijing Key Laboratory of Performance Guarantee on Urban Rail Transit Vehicles, School of Mechanical-Electronic and Vehicle Engineering, Beijing University of Civil Engineering and Architecture, Beijing 100044, China
  • 2Institute of Optics and Laser Metrology, National Institute of Metrology, Beijing 100029, China
  • show less
    References(15)

    [1] ZHANG A, XIONG Z X, CHEN X T et al. Ytterbium optical lattice clock with instability of order 10–18[J]. Metrologia, 59, 065009(2022).

    [2] OELKER E, HUTSON R B, KENNEDY C J et al. Demonstration of 4.8 ×10–17 stability at 1 s for two independent optical clocks[J]. Nature Photonics, 13, 714-719(2019).

    [3] AI D, QIAO H, ZHANG S et al. Study of optical clocks based on ultracold 171Yb atoms[J]. Chinese Physics B, 29, 090601(2020).

    [4] ZHAO Guodong, LU Xiaotong, CHANG Hong. Research progress of the optical frequency standard[J]. Laser & Optoelectronics Progress, 60, 3788(2023).

    [5] Boulder Atomic Clock Optical Network (BACON) Collaboration. Frequency ratio measurements at 18-digit accuracy using an optical clock network[J]. Nature, 591, 564-569(2021).

    [6] BROWN R C, PHILLIPS N B, BELOY K et al. Hyperpolarizability and operational magic wavelength in an optical lattice clock[J]. Physical Review Letters, 119, 253001(2017).

    [7] LEE S, PARK C Y, LEE W K et al. Cancellation of collisional frequency shifts in optical lattice clocks with Rabi spectroscopy[J]. New Journal of Physics, 18, 033030(2016).

    [8] BLOOM B J, NICHOLSON T L, WILLIAMS J R et al. An optical lattice clock with accuracy and stability at the 10~18 level[J]. Nature, 506, 71-75(2014).

    [9] ALKHUDER K. Attenuated total reflection-Fourier transform infrared spectroscopy: a universal analytical technique with promising applications in forensic analyses[J]. International Journal of Legal Medicine, 136, 1717-1736(2022).

    [10] ALI S, NAVEED A, HUSSAIN I et al. Diagnosis and monitoring of hepatocellular carcinoma in Hepatitis C virus patients using attenuated total reflection Fourier transform infrared spectroscopy[J]. Photodiagnosis and Photodynamic Therapy, 43, 103677(2023).

    [11] HE W D, HU A Y, DONG C et al. Design of a compact analog complex correlator for millimeter-wave radiation temperature measurement system[J]. Micromachines, 14, 867(2023).

    [12] MENG Xiangrui, SU Guoxian, YUAN Zhensheng. Progress on atom cooling techniques[J]. Low Temperature Physical Letters, 43, 1-17(2021).

    [13] JIANG Lei, LI Shuo, XU Haosheng. Development of ultraviolet-visible wavelength solution reference materials[J]. Chemical Analysis & Metrics, 33, 1-6(2024).

    [14] YOU Yusheng, WU Lijun, LIU Hongchao. Development of infrared wavelength reference material[J]. Chemical Analysis and Meterage, 19, 4-6(2010).

    [15] FENG Guojin, MA Yuxuan, LIANG Fengchen et al. Development of polystyrene infrared wavelength reference material[J]. Metrology Science and Technology, 3-5(2019).

    Tools

    Get Citation

    Copy Citation Text

    Zhenyuan ZHANG, Xinhua CHEN, Guojin FENG, Qiaoxiang ZHANG, Chundi ZHENG. Development of visible near-infrared wavelength reference materials[J]. Journal of Applied Optics, 2024, 45(5): 1042

    Download Citation

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

    Category:

    Received: Sep. 25, 2023

    Accepted: --

    Published Online: Dec. 20, 2024

    The Author Email: Xinhua CHEN (陈新华), Guojin FENG (冯国进)

    DOI:10.5768/JAO202445.0505002

    Topics