High Power Laser and Particle Beams, Volume. 34, Issue 1, 011008(2022)
Modeling and analysis of inner thermal effects in high energy laser system
[2] Huang Tingrui, Huang Wenfa, Wang Jiangfeng, et al. Thermal-induced wavefront aberration in sapphire-cooled Nd: glass slab[J]. Applied Physics B, 122, 182(2016).
[3] Sikocinski P, Novak O, Smrz M, et al. Time-resolved measurement of thermally induced aberrations in a cryogenically cooled Yb: YAG slab with a wavefront sensor[J]. Applied Physics B, 122, 73(2016).
[5] Li Linxin, Jin Yunxia, Kong Fanyu, et al. Beam modulation due to thermal deformation of grating in a spectral beam combining system[J]. Applied Optics, 56, 5511-5519(2017).
[8] Peñano J, Sprangle P, Ting A, et al. Optical quality of high-power laser beams in lenses[J]. Journal of the Optical Society of America B, 26, 503-510(2009).
[12] [12] Sun Yi, Li Fu, Yang Wenqiang, et al. Thermal effects of optical antenna under the irradiation of laser[C]Proceedings of SPIE 10463, AOPC 2017: Space Optics Earth Imaging Space Navigation. 2017: 104631F.
[16] [16] Yan Zongda, Wang Hongli. Heat stress[M]. Beijing: Higher Education Press, 1993
[26] Gavrielides A, Phillip P. Time-dependent thermal blooming in axial pipe flow[J]. Applied Optics, 22, 3359-3365(1983).
[32] An Jianzhu, Li Youkuan, Du Xiangwan. Thermal effects of a laser beam tube consisting of a window and nonflowing gas[J]. Optics Letters, 29, 2899-2901(2004).
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Peng Hu, Jianzhu Zhang, Feizhou Zhang. Modeling and analysis of inner thermal effects in high energy laser system[J]. High Power Laser and Particle Beams, 2022, 34(1): 011008
Category: Thermal and Mechanical Effects of Laser
Received: Jul. 19, 2021
Accepted: --
Published Online: Jan. 25, 2022
The Author Email: Zhang Feizhou (zhangfeizhou@163.com)