• Infrared and Laser Engineering
  • Vol. 51, Issue 6, 20220321 (2022)
Qi Bian1, Yong Bo1、*, Qinjun Peng1, Min Li2, Kai Wei2, Yudong Zhang2, Lu Feng3, and Suijian Xue3
Author Affiliations
  • 1Center for Laser Physics and Technique, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, China
  • 2Key Laboratory on Adaptive Optics, Institute of Optics and Electronics, Chinese Academy of Sciences, Chengdu 610209, China
  • 3National Astronomical Observatories, Chinese Academy of Sciences, Beijing 100012, China
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    DOI: 10.3788/IRLA20220321 Cite this Article
    Qi Bian, Yong Bo, Qinjun Peng, Min Li, Kai Wei, Yudong Zhang, Lu Feng, Suijian Xue. Technology of microsecond-pulse sodium laser guide stars asterism (Invited)[J]. Infrared and Laser Engineering, 2022, 51(6): 20220321 Copy Citation Text show less
    Experimental configuration of multiple sodium LGS system (BS, beam shaper; HW, half-wave plate; HR, high reflection mirror; P, thin film polarizer; QWP, quarter-wave plate; PD, photo detector; OC, optical chopper; CCD, charge-coupled device; p, horizontal polarization; s, vertical polarization;Ll/Lr, linearly polarization at a 135°/45° to the x-axis; Cl/Cr, left-hand/right-hand circular polarization)
    Fig. 1. Experimental configuration of multiple sodium LGS system (BS, beam shaper; HW, half-wave plate; HR, high reflection mirror; P, thin film polarizer; QWP, quarter-wave plate; PD, photo detector; OC, optical chopper; CCD, charge-coupled device; p, horizontal polarization; s, vertical polarization;Ll/Lr, linearly polarization at a 135°/45° to the x-axis; Cl/Cr, left-hand/right-hand circular polarization)
    Measurement results of average output power of sodium laser
    Fig. 2. Measurement results of average output power of sodium laser
    Measurement results of sodium laser wavelength and linewidth
    Fig. 3. Measurement results of sodium laser wavelength and linewidth
    Pulse traces measurement of (a) s-polarized laser-1; (b) p-polarized laser-2; (c) Combined laser with alternate s/p polarization
    Fig. 4. Pulse traces measurement of (a) s-polarized laser-1; (b) p-polarized laser-2; (c) Combined laser with alternate s/p polarization
    Photograph of two sodium laser facility on 1.8 m telescope
    Fig. 5. Photograph of two sodium laser facility on 1.8 m telescope
    Images of sodium LGS asterism and Rayleigh scattering with different configurations
    Fig. 6. Images of sodium LGS asterism and Rayleigh scattering with different configurations
    Spot size of single sodium LGS(Squares: Experimental results; Solid line: Gaussian fitting)
    Fig. 7. Spot size of single sodium LGS(Squares: Experimental results; Solid line: Gaussian fitting)
    LGS flux for orthogonally circular and orthogonally linear polarization versus laser power
    Fig. 8. LGS flux for orthogonally circular and orthogonally linear polarization versus laser power
    Simulated echo of Rayleigh and sodium LGS(Inset: Sodium LGS image without Rayleigh)
    Fig. 9. Simulated echo of Rayleigh and sodium LGS(Inset: Sodium LGS image without Rayleigh)
    Qi Bian, Yong Bo, Qinjun Peng, Min Li, Kai Wei, Yudong Zhang, Lu Feng, Suijian Xue. Technology of microsecond-pulse sodium laser guide stars asterism (Invited)[J]. Infrared and Laser Engineering, 2022, 51(6): 20220321
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