Opto-Electronic Engineering, Volume. 45, Issue 3, 170735(2018)

Design of the TMT laser guide star facility

Li Min1,2, Jiang Changchun1,2, Wei Kai1,2, Fan Muwen1,2, Rui Daoman1,2, Tang Jinlong1,2, Corinne Boyer3, LianqiWang3, and Melissa Trubey3
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
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    References(10)

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    [5] [5] Bienfang J C, Denman C A, Grime B W, et al. 20 W of continuous-wave sodium D2 resonance radiation from sum-frequency generation with injection-locked lasers[J]. Optics Letters, 2003, 28(22): 2219–2221.

    [6] [6] Velur V, Kibblewhite E J, Dekany R G, et al. Implementation of the Chicago sum frequency laser at Palomar laser guide star test bed[J]. Proceedings of SPIE, 2004, 5490: 1033–1040.

    [7] [7] Feng Y, Taylor L R, Calia D B. 25 W Raman–fiber–amplifierbased 589 nm laser for laser guide star[J]. Optics Express, 2009, 17(21): 19021–19026.

    [8] [8] Taylor L R, Feng Y, Calia D B. 50W CW visible laser source at 589nm obtained via frequency doubling of three coherently combined narrow-band Raman fibre amplifiers[J]. Optics Express, 2010, 18(8): 8540–8555.

    [9] [9] 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, 2012, 8447: 84471Q.

    [10] [10] Li M, Wei K, Tang J L, et al. The progress of TMT laser guide star facility[J]. Proceedings of SPIE, 2016, 9909: 99095Q, doi: 10.1117/12.2231987.

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    Li Min, Jiang Changchun, Wei Kai, Fan Muwen, Rui Daoman, Tang Jinlong, Corinne Boyer, LianqiWang, Melissa Trubey. Design of the TMT laser guide star facility[J]. Opto-Electronic Engineering, 2018, 45(3): 170735

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    Paper Information

    Category: Article

    Received: Dec. 9, 2017

    Accepted: --

    Published Online: May. 3, 2018

    The Author Email:

    DOI:10.12086/oee.2018.170735

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