Chinese Journal of Lasers, Volume. 43, Issue 3, 302003(2016)

High-Power Single-Frequency 461 nm Generation from an Intracavity Doubling of Ti∶Sapphire Laser with LBO

Li Huijuan*, Zhang Miao, and Li Fengqin
Author Affiliations
  • [in Chinese]
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    References(18)

    [1] [1] P F Moulton. Spectroscopic and laser characteristics of Ti∶Al2O3[J]. J Opt Soc Am B, 1986, 3(1): 125-133.

    [2] [2] M Pizzocaro, D Calonico, P C Pastor, et al.. Efficient frequency doubling at 399 nm[J]. Appl Opt, 2014, 53(16): 3388-3392.

    [3] [3] F Torabi-Goudarizi, E Riis. Efficient cw high-power frequency doubling in periodically poled KTP[J]. Opt Commun, 2003, 227(4): 389- 403.

    [4] [4] Tian Xiao. Realization of First-Stage Cooling of Strontium for the Optical Clock[D]. Xi′an: National Time Service Center, Chinese Academy of Sciences, 2010.

    [5] [5] Chang Hong, Zhang Shougang, Wang Xinliang, et al.. The development of atomic clock for time keeping and the strontium optical clock in national time service center[J]. Scientia Sinica Phy, Mech & Astron, 2010, 40(5): 616-622.

    [6] [6] A D Saenz. 461 nm Laser for Studies in Ultracold Neutral Strontium[D]. Houston: Rice University, 2005.

    [8] [8] Li Zhixiu, Yang Wenhai, Wang Yajun, et al.. The optimal design of single-frequency laser system for 795nm squeezed light source[J]. Chinese J Lasers, 2015, 42(9): 0902002.

    [9] [9] Li Hong, Feng Jinxia, Wan Zhenju, et al.. Low noise continuous-wave single frequency 780 nm laser high-efficiently generated by extracavity- enhanced frequency doubling[J]. Chinese J Lasers, 2014, 41(5): 0502003.

    [10] [10] Zheng Yaohui, Wang Yajun, Peng Kunchi. A high-power single-frequency 540 nm laser obtained by intracavity frequency doubling of an Nd∶YAP laser[J]. Chin Phys Lett, 2012, 29(4): 044208.

    [11] [11] Wang Yajun, Yang Wenhai, Zheng Yaohui, et al.. Influence of pump wavelength and Nd3+ doubling single-frequency lasers[J]. Chinese J Lasers, 2013, 40(6): 0602005.

    [13] [13] Li Fengqin, Shi Zhu, Li Yongmin, et al.. Tunable single-frequency intracavity frequency-doubled Ti:sapphire laser aroud 461 nm[J]. Chin Opt Lett, 2011, 28(12): 124205.

    [14] [14] W Koechner. Solid-State Laser Engineering[M]. Beijing: World Publishing Corporation, 2013.

    [15] [15] J Harrison, A Finch, D M Rines, et al.. Low-threshold, cw, all-solid-state Ti∶Al2O3 laser[J]. Opt Lett, 1991, 16(8): 581-583.

    [16] [16] J J Zondy, M Abed, S Khodja. Twin-crystal walk-off-compensated type-II second-harmonic generation: single-pass and cavity-enhanced experiments in KTiOPO4[J]. J Opt Soc Am B, 1994, 11(12): 2368-2370.

    [17] [17] Sun Yan, Lu Huadong, Su Jing. Continuous-wave single-frequency all-solid-state Ti:Al2O3 laser[J]. Acta Sinica Quantum Optica, 2008, 14(3): 344-347.

    CLP Journals

    [1] Su Jing, Jin Pixian, Wei Yixiao, Lu Huadong, Peng Kunchi. Automatically and Broadly Tunable All-Solid-State Continuous Single-Frequency Ti∶Sapphire Laser[J]. Chinese Journal of Lasers, 2017, 44(7): 701006

    [2] Jiang Jian, Zhang Jiandong, Wang Kai, Xiao Xuan, Zhang Zuxing. Theoretical Study on Broadband Frequency Doubling in Aperiodically Poled Lithium Niobate Crystal[J]. Laser & Optoelectronics Progress, 2017, 54(4): 41901

    [3] Zhang Lianping, Yin Guoling, Li Fengqin, Shi Zhu, Lu Huadong. All-Solid-State Tunable Ti∶Sapphire Laser with High-Power and Single-Frequency at 900 nm[J]. Chinese Journal of Lasers, 2017, 44(12): 1201002

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    Li Huijuan, Zhang Miao, Li Fengqin. High-Power Single-Frequency 461 nm Generation from an Intracavity Doubling of Ti∶Sapphire Laser with LBO[J]. Chinese Journal of Lasers, 2016, 43(3): 302003

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    Paper Information

    Category: Laser physics

    Received: Sep. 11, 2015

    Accepted: --

    Published Online: Mar. 4, 2016

    The Author Email: Huijuan Li (lhjfriends@163.com)

    DOI:10.3788/cjl201643.0302003

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