MoSSe Saturable Absorber-Based High-Power Passively Q-Switched 2.0 μm Bulk Laser

被引:10
|
作者
Yan, Bingzheng [1 ]
Zhang, Baitao [1 ]
He, Jingliang [1 ]
Nie, Hongkun [1 ]
Li, Guoru [1 ]
Liu, Junting [1 ]
Shi, Bingnan [1 ]
Yang, Kejian [1 ]
机构
[1] Shandong Univ, Inst Crystal Mat, State Key Lab Crystal Mat, Jinan 250100, Shandong, Peoples R China
关键词
Laser materials; Q-switched laser; solid-state lasers; TRANSITION-METAL DICHALCOGENIDES; HETEROSTRUCTURES;
D O I
10.1109/LPT.2019.2891066
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 ternary transitional metal dichalcogenides alloy material, molybdenum sulphoselenide (MoSSe), has been successfully fabricated and used as a saturable absorber (SA) for a passively Q-switched (PQS) Tm:YAP bulk laser operating at 2.0 mu m for the first time, to best of our knowledge. The open aperture Z-scan method was used to characterize the saturable absorption properties of the prepared MoSSe SA. The maximum average output power and pulse repetition rate, shortest pulse width, highest single pulse energy, and highest pulse peak power of this laser were 2.26 W, 95 kHz, 303 ns, 24.2 mu J, and 80 W, respectively. The results are distinguished from other two-dimensional materials-based 2.0 mu m PQS lasers, indicating that MoSSe could be a promising material for generating high power and short pulse width lasers in the 2.0 mu m spectral range.
引用
收藏
页码:261 / 264
页数:4
相关论文
共 50 条
  • [21] Passively Q-switched 2 μm Tm:YAP laser based on graphene saturable absorber mirror
    Hou, Jia
    Zhang, Baitao
    He, Jingliang
    Wang, Zhaowei
    Lou, Fei
    Ning, Jian
    Zhao, Ruwei
    Su, Xiancui
    APPLIED OPTICS, 2014, 53 (22) : 4968 - 4971
  • [22] Passively Q-switched Nd:GGG laser with a SWCNT as saturable absorber
    Hongwei Chu
    Shengzhi Zhao
    Kejian Yang
    Yufei Li
    Dechun Li
    Guiqiu Li
    Jia Zhao
    Wenchao Qiao
    Tao Li
    Yonggang Wang
    Yishan Wang
    Optical and Quantum Electronics, 2015, 47 : 697 - 703
  • [23] High-power passively Q-switched 2 μm all-solid-state laser based on a Bi2Te3 saturable absorber
    X.LIU
    K.YANG
    S.ZHAO
    T.LI
    W.QIAO
    H.ZHANG
    B.ZHANG
    J.HE
    J.BIAN
    L.ZHENG
    L.SU
    J.XU
    Photonics Research, 2017, (05) : 461 - 466
  • [24] High-power passively Q-switched 2 μm all-solid-state laser based on a Bi2Te3 saturable absorber
    Liu, X.
    Yang, K.
    Zhao, S.
    Li, T.
    Qiao, W.
    Zhang, H.
    Zhang, B.
    He, J.
    Bian, J.
    Zheng, L.
    Su, L.
    Xu, J.
    PHOTONICS RESEARCH, 2017, 5 (05) : 461 - 466
  • [25] High-Power Passively Q-Switched Nd:YAG Laser at 1112 nm with a Cr4+:YAG Saturable Absorber
    Dun, Yang-Yang
    Li, Ping
    Chen, Xiao-Han
    Ma, Bao-Min
    CHINESE PHYSICS LETTERS, 2016, 33 (02)
  • [26] High-Power Passively Q-Switched Nd:YAG Laser at 1112 nm with a Cr4+:YAG Saturable Absorber
    敦洋洋
    李平
    陈晓寒
    马宝民
    Chinese Physics Letters, 2016, 33 (02) : 34 - 37
  • [27] High-power all-fiber passively Q-switched laser using a doped fiber as a saturable absorber: numerical simulations
    Soh, Daniel B. S.
    Bisson, Scott E.
    Patterson, Brian D.
    Moore, Sean W.
    OPTICS LETTERS, 2011, 36 (13) : 2536 - 2538
  • [28] Passively Q-switched Nd:KLuW laser with semiconductor saturable absorber
    Guo Lin
    Wang Gui-Ling
    Zhang Hong-Bo
    Geng Ai-Cong
    Chen Ya-Hui
    Lu Yuan-Fu
    Cui Qian-Jin
    Zhou Yong
    Cui Da-Fu
    Zhang Jian-Xiu
    Zhang Huai-Jin
    Wang Ji-Yang
    Xu Zu-Yan
    CHINESE PHYSICS LETTERS, 2007, 24 (06) : 1583 - 1585
  • [29] PtSe2 as a Wideband Saturable Absorber for Passively Q-Switched High-Power Mid-Infrared Fiber Laser
    Jiang, Shurong
    Wei, Chen
    Zheng, Le
    Zhou, H.
    Liu, W.
    Zhang, J.
    Zhang, H.
    Liu, Yong
    IEEE PHOTONICS TECHNOLOGY LETTERS, 2022, 34 (03) : 181 - 184
  • [30] MoSe2 nanoflower as the saturable absorber for 1 μm and 2 μm passively Q-switched bulk state laser
    Wang, Xihu
    Xu, Jinlong
    Xia, Houping
    You, Zhenyu
    Huang, Yisheng
    Lin, Zhoubin
    Tu, Chaoyang
    MATERIALS RESEARCH BULLETIN, 2018, 99 : 168 - 173