[1] Yu WANG. Overview of high power laser technology and industrial development. Advanced Materials Industry, 47-50(2022).
[2] Xiaojun TANG, Gang WANG, Jiao LIU et al. Development of high brightness solid-state laser technology. Strategic Study of CAE, 22, 49-55(2020).
[3] G HUBER, C KRÄNKEL, K PETERMANN. Solid-state lasers: status and future. Journal of the Optical Society of America, B. Optical Physics, 27, 93-105(2010).
[4] Lihong ZHANG. Development prospect of high energy lasers in laser weapons. Inner Mongolia Science Technology & Economy, 95-96(2016).
[5] Wei LUO, Wenfeng DONG, Huabing YANG et al. High power laser development trend. Laser & Infrared, 43, 845-852(2013).
[6] D DHUPAL, B DOLOI, B BHATTACHARYYA. Modeling and optimization on Nd: YAG laser turned micro-grooving of cylindrical ceramic material. Optics and Lasers in Engineering, 47, 917-925(2009).
[7] P MAHNKE, P PEUSER, P HUKE. Nd:YAG laser/KTiOAsO4 (KTA) OPO system for laser ultrasound measurements on carbon-fiber-reinforced composite materials. Applied Physics B, 116, 333-338(2014).
[8] Songhong ZHANG, Yingruo XU. Study on the technology of cutting alloy with solid pulse Nd:YAG laser. Applied Laser, 40, 724-729(2020).
[9] H XIANG, B CHEN, W J WU et al. An integral MPS model of blood coagulation by laser irradiation: application to the optimization of multi-pulse Nd:YAG laser treatment of port-wine stains. International Journal of Heat and Mass Transfer, 114, 1220-1233(2017).
[10] A TORTSCHANOFF, M BAUMGART, G KROUPA. Application of a compact diode pumped solid-state laser source for quantitative laser-induced breakdown spectroscopy analysis of steel. Optical Engineering, 56, 1-8(2017).
[11] C POSADAS-CASTILLO, R M LÓPEZ-GUTIÉRREZ, C CRUZ-HERNÁNDEZ. Synchronization of chaotic solid-state Nd:YAG lasers: application to secure communication. Communications in Nonlinear Science and Numerical Simulation, 13, 1655-1667(2008).
[12] J XU, M W KONG, A B LIN et al. Directly modulated green-light diode-pumped solid-state laser for underwater wireless optical communication. Optics Letters, 42, 1664-1667(2017).
[13] L DING, S S LI, Z W LU et al. Analysis of the beam-pointing stability in the high power laser system. Optik-International Journal for Light and Electron Optics, 127, 6056-6061(2016).
[14] M L XIE, P LIU, C W MA et al. Application research of high-precision laser beam pointing technology in airborne aiming pod. Optik, 183, 775-782(2019).
[15] S K DIXIT, R MAHAKUD, O PARAKASH et al. Role of optical resonator on the pointing stability of copper vapor laser beam. Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter, 281, 2590-2597(2008).
[16] Fuqiang YONG. Numerical matrix method for mode study of laser resonator(2005).
[17] A H PAXTON, C YANG. Laser simulation applying Fox-Li iteration: investigation of reason for non-convergence. SPIE, 10090, 233-239(2017).
[18] J W GOODMAN. Introduction to Fourier optics, 96-120(2004).
[19] M BORN, E WORF. Principles of optics, 131-197(1999).
[20] Hanqing WANG. Influence of gain and thermal effect on high performance solid-state lasers(2018).
[21] Pengfei QU. Research on key technology of compact high performance solid-state laser(2017).
[22] Jiangtao ZHU. Study on Q-switched laser based on Nd: YAG thermal lens effect(2022).
[23] Ce SHI. Heat conduction equation finite difference method to achieve the MATLAB. Journal of Xianyang Normal University, 24, 27-29(2009).