Chinese Journal of Lasers, Volume. 48, Issue 12, 1201002(2021)
Physical Limitations of High-Power, High-Energy Lasers
Fig. 1. Status and trends for the development of high-power, high-energy lasers[2]
Fig. 3. Pump efficiency versus relative pump duration within high-power laser gain media
Fig. 4. Simulated extraction efficiency versus input fluence of pulse laser amplification system under different gain-loss ratio
Fig. 7. Key points of beam quality management for high-power solid laser facilities[37]
Fig. 10. Wavefront index design of optical elements for high-power solid laser facilities[43]
Fig. 11. Typical temporal structure of the ultraintense ultrashort laser produced via CPA or OPCPA[47]
Fig. 12. Comprehensive analysis of thermal management for high-energy laser system
Fig. 13. Schematic of the formation of nonlinear hot images in high-power lasers[91]
Fig. 14. Damage of nodular defects in dielectric multi-layer coatings[103]. (a) Approach to study the damage of nodular defects by single factor experiment; (b) physical mechanism of the electric field intensity enhancement in nodules; (c) new structure of thin film for suppressing electric field enhancement
Fig. 15. Overall implementation strategy for the above-threshold operation of ultraviolet optical elements in high-power laser facility with several megajoules
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Xiaomin Zhang, Dongxia Hu, Dangpeng Xu, Jing Wang, Xinbin Chen, Jun Liu, Wei Han, Min Li, Mingzhong Li. Physical Limitations of High-Power, High-Energy Lasers[J]. Chinese Journal of Lasers, 2021, 48(12): 1201002
Category: laser devices and laser physics
Received: Mar. 23, 2021
Accepted: May. 8, 2021
Published Online: Jun. 11, 2021
The Author Email: Zhang Xiaomin (zhangxiaomin@caep.cn)