[1] Booth I J, Archambault J L, Ventrudo B F. Photodegradation of near-infrared-pumped Tm(3+)- doped ZBLAN fiber upconversion lasers [J]. Optics Letters, 1996, 21(5): 348-350. doi:  10.1364/OL.21.000348
[2] Gao J, Dai X J, Zhang L, et al. All-solid-state continuous-wave yellow laser at 561 nm under in-band pumping [J]. Journal of the Optical Society of America B, 2013, 30(1): 95-98. doi:  10.1364/JOSAB.30.000095
[3] Marling J. 1.05-1.44 μm tunability and performance of the CW Nd3+: YAG laser [J]. IEEE Journal of Quantum Electronics, 1978, 14(1): 56-62. doi:  10.1109/JQE.1978.1069667
[4] Zhang S S, Wang Q P, Zhang X Y, et al. Continuous-wave ceramic Nd: YAG laser at 1123 nm [J]. Laser Physics Letters, 2009, 6(12): 864-867. doi:  10.1002/lapl.200910094
[5] Li C Y, Bo Y, Xu Y T, et al. 219.3 W CW diode-side-pumped 1123 nm Nd: YAG Iaser [J]. Optics Communications, 2010, 283: 2885-2887. doi:  10.1016/j.optcom.2010.03.039
[6] Chen Y F, Lan Y P, Tsai S W. High-power diode-pumped actively Q-switched Nd: YAG laser at 1123 nm [J]. Optics Communications, 2004, 234(1-6): 309-313. doi:  10.1016/j.optcom.2004.02.009
[7] Tang Y, Zhang X Y, Wang Q P, et al. High-efficiency diode-pumped acousto-optically Q-switched 1123 nm ceramic Nd: YAG laser [J]. Laser Physics, 2011, 21(4): 695-699. doi:  10.1134/S1054660X11070280
[8] Koechner W. Solid-State Laser Engineering[M]. 6th ed. New York: Springer, 2006: 488-533.
[9] Chen Y F, Lan Y P. Diode-pumped passively Q-switched Nd: YAG laser at 1123 nm [J]. Applied Physics B-Lasers and Optics, 2004, 79: 29-31. doi:  10.1007/s00340-004-1526-2
[10] Li P, Chen X H, Zhang H N, et al. Diode-pumped passively Q-switched Nd: YAG ceramic laser at 1123 nm with a Cr4+: YAG saturable absorber [J]. Applied Physics Express, 2011, 4: 092702. doi:  10.1143/APEX.4.092702
[11] Huang J Y, Liang H C, Su K W, et al. InGaAs quantum-well saturable absorbers for a diode-pumped passively Q-switched Nd: YAG laser at 1123 nm [J]. Applied Optics, 2007, 46(2): 239-243. doi:  10.1364/AO.46.000239
[12] Men S J, Liu Z J, Zhang X Y, et al. A graphene passively Q-switched Nd: YAG ceramic laser at 1123 nm [J]. Laser Physics Letters, 2013, 10: 035803. doi:  10.1088/1612-2011/10/3/035803
[13] Gao Y, Zhao T Z, Li C Y, et al. Diode-side-pumped passively Q-switched Nd: YAG laser at 1123 nm with reflective single walled carbon nanotube saturable absorber [J]. Optics Communications, 2013, 286: 261-264. doi:  10.1016/j.optcom.2012.08.045
[14] Bai J X, Li P, Chen X H, et al. Diode-pumped passively Q-switched Nd: YAG ceramic laser with a gold nanotriangles saturable absorber at 1 µm [J]. Applied Physics Express, 2017, 10(8): 082701. doi:  10.7567/APEX.10.082701
[15] Lin H F, Zhu W Z, Mu R Z, et al. Q-switched dual-wavelength laser at 1116 and 1123 nm using WS2 saturable absorber [J]. IEEE Photonics Technology Letters, 2018, 30(3): 285-288. doi:  10.1109/LPT.2017.2785619
[16] 毛梦涛, 陈锦辉, 丁梓轩, 等. 基于光纤二维材料集成器件的脉冲激光器及外场调控(特邀)[J]. 红外与激光工程, 2018, 47(8): 0803003. doi:  10.3788/IRLA201847.0803003

Mao Mengtao, Chen Jinhui, Ding Zixuan, et al. Pulsed laser based on two-dimensional material optical fiber integrated device and external control (Invited) [J]. Infrared and Laser Engineering, 2018, 47(8): 0803003. (in Chinese) doi:  10.3788/IRLA201847.0803003
[17] Burda C, Chen X B, Narayanan R, et al. Chemistry and properties of nanocrystals of different shapes [J]. Chemical Reviews, 2005, 105(4): 1025-1102. doi:  10.1021/cr030063a
[18] Zhang H N, Liu J. Gold nanobipyramids as saturable absorbers for passively Q-switched laser generation in the 1.1 μm region [J]. Optics Letters, 2016, 41(6): 1150-1152. doi:  10.1364/OL.41.001150
[19] Song T, Feng C, Chen X H, et al. Gold nanorods as a saturable absorber for passively Q-switching Nd: YAG lasers at 1064.3 and 1112 nm [J]. Laser Physics Letters, 2017, 14(5): 055808. doi:  10.1088/1612-202X/aa699a
[20] Wang L L, Chen X H, Bai J X, et al. Au nanocages/SiO2 as saturable absorbers for passively Q-switched all-solid-state laser [J]. Materials Research Express, 2018, 5(4): 045043. doi:  10.1088/2053-1591/aabe11
[21] Wang H, Brandl D W, Nordlander P, et al. Plasmonic nanostructures: artificial molecules [J]. Accounts of Chemical Research, 2007, 40(1): 53-62. doi:  10.1021/ar0401045
[22] Skrabalak S E, Chen J, Sun Y, et al. Gold nanocages: synthesis, properties, and applications [J]. Accounts of Chemical Research, 2008, 41(12): 1587-1595. doi:  10.1021/ar800018v
[23] Sheik B M, Said A A, Stryland E W V. High-sensitivity, single-beam n2 measurements [J]. Optics Letters, 1989, 14(17): 955-957. doi:  10.1364/OL.14.000955