Chinese Journal of Lasers, Volume. 45, Issue 1, 101011(2018)

65 mJ Fe2+∶ZnSe Mid-Infrared Laser at Room Temperature

Kong Xinyi1,2、*, Ke Changjun1, Hu Chengfeng3, Zhu Jiangfeng3, Wu Tianhao1,2, and Hang Yin4
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
  • 4[in Chinese]
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    References(20)

    [1] Taubman M S, Scott D C, Myers T L et al. Long wave infrared cavity enhanced sensors using quantum cascade lasers[C]. SPIE, 6010, 60100C(2005).

    [3] Ren W, Jiang W Z, Frank K. Single-QCL-based absorption sensor for simultaneous trace-gas detection of CH4 and N2O[J]. Applied Physics B, 117, 245-251(2014).

    [4] Hofstetter D, Faist J. High performance quantum cascade lasers and their applications[M]. //Solid-state mid-infrared laser sources.[S.l.]: Springer, 61-98(2003).

    [11] Kernal J, Fedorov V V, Gallian A et al. 3.9-4.8 μm gain-switched lasing of Fe∶ZnSe at room temperature[J]. Optics Express, 13, 10608-10615(2005).

    [12] Jelinkova H, Doroshenko M E, Jelinek M et al. Fe∶ZnSe laser oscillation under cryogenic and room temperature[C]. SPIE, 8599, 85990E(2013).

    [13] Zajac A, Skorczakowski M, Swiderski J et al. Electrooptically Q-witched mid-infrared Er∶YAG laser for medical applications[J]. Optics Express, 12, 5262(2004).

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    Kong Xinyi, Ke Changjun, Hu Chengfeng, Zhu Jiangfeng, Wu Tianhao, Hang Yin. 65 mJ Fe2+∶ZnSe Mid-Infrared Laser at Room Temperature[J]. Chinese Journal of Lasers, 2018, 45(1): 101011

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    Paper Information

    Category: laser devices and laser physics

    Received: Jul. 14, 2017

    Accepted: --

    Published Online: Jan. 24, 2018

    The Author Email: Xinyi Kong (kongxinyi15@mails.ucas.ac.cn)

    DOI:10.3788/CJL201845.0101011

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