Chinese Journal of Lasers, Volume. 50, Issue 13, 1310004(2023)

Study on Tomography Performance of Multi-Conjugated Adaptive Optics Affected by Configuration of Sodium Laser Guide Star Constellation

Jian Huang1 and Gongchang Wang2、*
Author Affiliations
  • 1Chongqing Key Laboratory of Manufacturing Equipment Mechanism Design and Control, School of Mechanical Engineering, Chongqing Technology and Business University, Chongqing 400067, China
  • 2No. 32037 Unit of PLA, Yaoan, Yunnan 675300, China
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    References(28)

    [1] Feng L, Zhang Y P, Song F J et al. Adaptive optics for night astronomy[J]. Physics, 47, 355-366(2018).

    [2] Wizinowich P, Le Mignant D, Bouchez A et al. The W. M. Keck Observatory laser guide star adaptive optics system: overview[J]. Publications of the Astronomical Society of the Pacific, 118, 297-309(2006).

    [3] Dong R X, Li M, Jin K et al. Research on double star wavefront error detection with Shack-Hartmann wavefront sensor to calculate piston-removed anisoplanatic error[J]. Laser & Optoelectronics Progress, 59, 2101001(2022).

    [4] Chen T J, Wang F, Li X Y et al. Return intensity of sodium guide star based on pumping under multiple laser parameters[J]. Chinese Journal of Lasers, 47, 0801001(2020).

    [5] Rigaut F, Neichel B. Multiconjugate adaptive optics for astronomy[J]. Annual Review of Astronomy and Astrophysics, 56, 277-314(2018).

    [6] D’Orgeville C, Diggs S, Fesquet V et al. Gemini South multi-conjugate adaptive optics (GeMS) laser guide star facility on-sky performance results[J]. Proceedings of SPIE, 8447, 84471Q(2012).

    [9] Shah S, Subramanian S, Anupama G C et al. Towards the development of the Infrared Guide Star Catalogue for the adaptive optics observations by the Thirty Meter Telescope[J]. Proceedings of SPIE, 12185, 1218506(2022).

    [10] Ma D L. Recommended conceptual optical system design for China’s Large Optical-infrared Telescope (LOT)[J]. Optics Express, 26, 108-119(2018).

    [11] Rao C H, Zhu L, Zhang L Q et al. Development of solar adaptive optics[J]. Opto-Electronic Engineering, 45, 170733(2018).

    [12] Berkefeld T, Soltau D, von der Luhe O. Multiconjugate adaptive optics at the Vacuum Tower Telescope, Tenerife[J]. Proceedings of SPIE, 4839, 544-553(2003).

    [13] Berkefeld T, Soltau D, von der Lühe O. Multi-conjugate solar adaptive optics with the VTT and GREGOR[J]. Proceedings of SPIE, 6272, 627205(2006).

    [14] Langlois M, Moretto G, Richards K et al. Solar multiconjugate adaptive optics at the Dunn Solar Telescope: preliminary results[J]. Proceedings of SPIE, 5490, 59-66(2004).

    [15] Fusco T, Conan J M, Michau V et al. Isoplanatic angle and optimal guide star separation for multiconjugate adaptive optics[J]. Proceedings of SPIE, 4007, 1044-1055(2000).

    [16] Gilles L, Wang L Q, Ellerbroek B L. Impact of laser launch location on the performance of laser tomography and multiconjugate adaptive optics for extremely large telescopes[J]. Applied Optics, 49, 114-119(2010).

    [17] Zhang X H, Rong J, Wang Z J et al. The stratified altitude which is suitable for four seasons is further identified[C], 4028-4030(2011).

    [18] Zhang L Q, Gu N T, Rao C H. Analysis of modal tomography for three-dimensional wavefront sensing of atmosphere turbulence[J]. Acta Physica Sinica, 62, 169501(2013).

    [19] Basden A G. Monte Carlo modelling of multiconjugate adaptive optics performance on the European Extremely Large Telescope[J]. Monthly Notices of the Royal Astronomical Society, 453, 3035-3042(2015).

    [20] Xuan L, He B, Hu L F et al. Configuration optimization of laser guide stars and wavefront correctors for multi-conjugation adaptive optics[J]. Chinese Physics B, 25, 094216(2016).

    [21] Bian Q, Bo Y, Peng Q J et al. Technology of microsecond-pulse sodium laser guide stars asterism (Invited)[J]. Infrared and Laser Engineering, 51, 11-16(2022).

    [22] Andersen M, Zinnecker H, Hirschauer A S et al. The stellar content of H72.97-69.39, a potential super star cluster in the making[J]. The Astronomical Journal, 161, 206(2021).

    [23] Yan Z J, Yang P Q. Modal reconstruction for three-dimensional wavefront of atmosphere turbulence in star oriented multi-conjugate adaptive optics[J]. Chinese Journal of Lasers, 42, 1113002(2015).

    [24] Roberto R, Enrico M, François R. Modal tomography for adaptive optics[J]. Astronomy and Astrophysics, 342, L53-L56(1999).

    [25] Dong B, Ren D Q, Zhang X. Numerical analysis of modal tomography for solar multi-conjugate adaptive optics[J]. Research in Astronomy and Astrophysics, 12, 465-471(2012).

    [26] Wang H S, Yao Y Q, Qian X et al. The method of modeling atmospheric optical turbulence[J]. Acta Astronomica Sinica, 53, 527-537(2012).

    [27] Qing C, Wu X Q, Li X B et al. Estimation of atmospheric optical turbulence profile by WRF model at Gaomeigu[J]. Chinese Journal of Lasers, 42, 0913001(2015).

    [28] Conan R, Correia C. Object-oriented MATLAB adaptive optics toolbox[J]. Proceedings of SPIE, 9148, 91486C(2014).

    [29] Yan Z J. Research on predictive control and multilayer conjugation technology of adaptive optical system[D], 92-93(2013).

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    Jian Huang, Gongchang Wang. Study on Tomography Performance of Multi-Conjugated Adaptive Optics Affected by Configuration of Sodium Laser Guide Star Constellation[J]. Chinese Journal of Lasers, 2023, 50(13): 1310004

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    Paper Information

    Category: remote sensing and sensor

    Received: Dec. 21, 2022

    Accepted: Feb. 8, 2023

    Published Online: Jun. 27, 2023

    The Author Email: Wang Gongchang (wh-99@126.com)

    DOI:10.3788/CJL221553

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