Passively Q-switched Resonantly Pumped Er:YAG Laser

被引:6
|
作者
Nemec, Michal [1 ]
Jelinkova, Helena [1 ]
Sulc, Jan [1 ]
Nejezchleb, Karel [2 ]
Skoda, Vaclav [2 ]
机构
[1] Czech Tech Univ, Fac Nucl Sci & Phys Engn, Brehova 7, CR-11519 Prague 1, Czech Republic
[2] Crytur Ltd, Turnov 51101, Czech Republic
关键词
Er:YAG; Q-Switching; resonantly pumped laser;
D O I
10.1117/12.853827
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
A preliminary investigation of the passively Q-switched resonantly pumped Er: YAG laser system operating at wavelength 1645 nm has been performed. The output characteristics of the designed and constructed laser, i.e., the output energy, temporal profile, and spatial beam structure were registered. The Er: YAG laser crystals longitudinally pulse-pumped by Erbium glass laser radiation (repetition rate 0.5 Hz, wavelength 1535 nm) were investigated. The passive Q-switch was a Co: MALO (Co2+:MgAl2O4) crystal. To optimize the system, three Er: YAG crystals with various in Erbium/Yttrium concentration and length were studied in the free-running regime. The curved pumping mirror of linear hemispherical oscillator had a high transmittance at the pumping wavelength and maximal reflectance at the generating wavelength around 1645 nm. The output flat dielectric coupler reflectance was 90 % at 1645 nm. Out of the three Er: YAG active laser crystals, the best output characteristics in free running regime were reached for the medium with Er3+ concentration 0.2 at.% Er/Y and length 25 mm. For the Q-switching, three saturable absorbers Co: MALO with various length, that is various transmission, were investigated. These crystals had no anti-reflection layer and were placed between the active crystal and output mirror. The laser resonator length was 162 mm. For an incident pump energy of 131 mJ, the 1.6 mJ Q-switched single pulse energy with 58 ns pulse duration (FWHM) was obtained. The corresponding peak power was 28 kW. The spatial beam structure was close to the fundamental profile.
引用
收藏
页数:7
相关论文
共 50 条
  • [21] Resonantly pumped, Q-Switched Nd:YLF Laser
    Pati, Bhabana
    Rines, Glen A.
    2012 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO), 2012,
  • [22] Actively Q-switched operation of a resonantly pumped polycrystalline ceramic Ho:YAG laser
    Zhao, Ting
    Yang, Xiaofang
    OPTICAL ENGINEERING, 2018, 57 (02)
  • [23] Resonantly pumped acousto-optically Q-switched hybrid Ho:YAG laser
    Kwiatkowski, J.
    Jabczynski, J. K.
    Zendzian, W.
    Swiderski, J.
    Gorajek, L.
    Galecki, L.
    LASER PHYSICS LETTERS, 2011, 8 (04) : 281 - 285
  • [24] High-energy resonantly diode-pumped Q-switched :YAG laser
    Berrou, A.
    Ibach, T.
    Eichhorn, M.
    APPLIED PHYSICS B-LASERS AND OPTICS, 2015, 120 (01): : 105 - 110
  • [25] Inband pumped passively Q-switched Er: YAG laser at 1645 nm using WS2
    Guo, Lei
    Li, Ming
    Li, Tao
    Zhang, Shuaiyi
    Yang, Kejian
    Fan, Mingqi
    Zhao, Shengzhi
    OPTICS COMMUNICATIONS, 2018, 406 : 230 - 233
  • [26] Pre-pumped passively Q-switched Nd:YAG/Cr:YAG microchip laser
    田信宁
    闫平
    柳强
    巩马理
    廖云
    Chinese Optics Letters, 2004, (09) : 536 - 537
  • [27] Resonantly pumped 1.645 μm high repetition rate Er:YAG laser Q-switched by a graphene as a saturable absorber
    Gao, Chunqing
    Wang, Ran
    Zhu, Lingni
    Gao, Mingwei
    Wang, Qing
    Zhang, Zhiguo
    Wei, Zhiyi
    Lin, Jingjing
    Guo, Liwei
    OPTICS LETTERS, 2012, 37 (04) : 632 - 634
  • [28] Stable high-energy Q-switched resonantly diode-pumped Er: YAG laser at 1645 nm
    Tang, Pinghua
    Zhou, Rong
    Zhao, Chujun
    Xu, Changwen
    Liu, Jun
    Zhang, Han
    Shen, Deyuan
    Wen, Shuangchun
    APPLIED OPTICS, 2014, 53 (32) : 7773 - 7777
  • [29] Resonantly diode-pumped continuous-wave and Q-switched Er:YAG laser at 1645 nm.
    Chang, N. W. H.
    Simakov, N.
    Hosken, D. J.
    Munch, J.
    Ottaway, D. J.
    Veitch, P. J.
    OPTICS EXPRESS, 2010, 18 (13): : 13673 - 13678
  • [30] A Resonantly Pumped Q-Switched Er:Lu2SiO5 Laser
    Yao Bao-Quan
    Yu Xiao
    Liu Xiao-Lei
    Duan Xiao-Ming
    Ju You-Lun
    Wang Yue-Zhu
    CHINESE PHYSICS LETTERS, 2013, 30 (03)