[1] Kerse C, Kalaycıoğlu H, Elahi P, et al. Ablation-cooled material removal with ultrafast bursts of pulses[J]. Nature, 537, 84-88(2016).
[2] Liang Liang, Yuan Jiandong, Lin Guozhi. Effect of the scanning speed on the microgroove formation regime in nanosecond-pulsed laser scanning ablation of cermet[J]. Int J Adv Manuf Technol, 107, 97-107(2020).
[3] Fazeli R. Enhanced X-ray emission from laser-produced gold plasma by double pulses irradiation of nano-porous targets[J]. Phys Lett A, 381, 467-471(2017).
[4] Schmidt B E, Hage A, Mans T, et al. Highly stable, 54 mJ Yb-InnoSlab laser platform at 0.5 kW average power[J]. Opt Express, 25, 17549-17555(2017).
[5] Reagan B A, Baumgarten C, Jankowska E, et al. Scaling diode-pumped, high energy picosecond lasers to kilowatt average powers[J]. High Power Laser Sci Eng, 6, 01000e11(2018).
[6] Sun L C, Liu T H, Fu X, et al. 1.57 times diffraction-limit high-energy laser based on a Nd: YAG slab amplifier and an adaptive optics system[J]. Chin Opt Lett, 17, 051403(2019).
[7] Koechner W. Solidstate laser engineering[M]. Sun Wen, Jiang Zewen, Cheng Guoxiang, trans. Beijing: Science Press, 2002
[8] Zhou Bingkun, Gao Yizhi, Chen Tirong, et al. The principle of laser[M]. 4th edition. Beijing: National Defense Industry Press, 2000.
[9] Klimek D E, Ml A. Nd: YAG ceramic ThinZag highpower laser development[M]Injeyan H, Goodno G D. Highpower laser hbook. New Yk: McGrawHill, 2011: 207223.