Acta Optica Sinica, Volume. 32, Issue 5, 519001(2012)
Condition for Suppression of Small-Scale Self-Focusing of High-Power Laser Beams by Spectral Bandwidth
[1] [1] J. A. Fleck, J. R. Morris, E. S. Bliss. Small-scale self-focusing effects in a high power glass laser amplifiler[J]. IEEE J. Quantum Electron., 1978, 14(5): 353~363
[2] [2] W. Williams, J. T. Hunt, W. E. Warren. Light propagation through large laser system[J]. IEEE J. Quantum Electron., 1981, 17(9): 1727~1743
[3] [3] W. Williams, J. Trenholme, C. Orth et al.. NIF design optimization[R]. LLNL Laser Program Quarterly Report, 1996, UCRL-LR-105821-96-4: 181~191
[4] [4] Fu Fuxing, Zhang Bin. Recovery of high frequency phase of laser beam with wavefront distortion[J]. Chinese J. Lasers, 2011, 38(4): 44~49
[5] [5] Cao Guowei, Shi Peng, Zhang Xiaobo et al.. Improvement of target irradiation uniformity using spectral dispersion and distributed phase plate[J]. Chinese J. Lasers, 2011, 38(10): 29~34
[6] [6] Pan Xue, Li Xuechun, Wang Jiangfeng et al.. Study on stability arbitrary spectral shaping using optical parametric chirped pulse amplification[J]. Chinese J. Lasers, 2011, 38(1): 0102004
[7] [7] Zhao Dongfeng, Wang Li, Lin Zunqi et al.. Experimental study of 351 nm propagation with high fluence on No.9 system of SG-Ⅱ laser facility[J]. Chinese J. Lasers, 2011, 38(7): 1~8
[8] [8] Lu Xinghua, Wang Jiangfeng, Jiang Youen et al.. Theoretical study of FM-AM effect of broadband pulsed laser in a regenerative amplifier[J]. Chinese J. Lasers, 2011, 38(5): 70~74
[9] [9] W. J. Wadsworth, O. B. Arturo, J. C. Knight et al.. Supercontinuum generation in photonic crystal fibers and optical fiber tapers: a novel light source[J]. JOSA. B, 2002, 19(9): 2148~2155
[10] [10] J. Herrmann, U. Griebner, N. Zhavoronkov et al.. Experimental evidence for supercontinuum generation by fission of higher-order solitons in photonic fibers[J]. Phys. Rev. Lett., 2002, 88(17): 173901
[11] [11] X. D. Cao, G. P. Agrawal, C. J. McKinstrie. Self-focusing of chirped optical pulses in nonlinear dispersive media[J]. Phys. Rev. A, 1994, 49(5): 4085~4092
[12] [12] D. Strickland, P. B. Corkum. Resistance of short pulses to self-focusing[J]. J. Opt. Soc. Am. B, 1994, 11(3): 492~497
[13] [13] P. W. McKenty, S. Skupsky, J. H. Kelly et al.. Numerical investigation of the self-focusing of broad-bandwidth laser light with applied angular dispersion[J]. J. Appl. Phys., 1994, 76(4): 2027~2036
[14] [14] M. D. Feit, J. A. Fleck. Self-focusing of Broadband Laser Pulses in Dispersive Media[R]. LLNL report, 1992, UCRL-1D-1: 12523~12540
[15] [15] S. Skupsky, R. W. Short, T. Kessler et al.. Improved laser beam uniformity using the angular dispersion of frequency modulated light[J]. J. Appl. Phys., 1989, 66(8): 3456~3462
[16] [16] D. Marcuse. Pulse distortion in single-mode fibers. 3: chirped pulses[J]. Appl. Opt., 1981, 20(20): 3573~3579
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Deng Jianqin, Zhang Jin, Yang Hua, Fu Xiquan, Wen Shuangchun. Condition for Suppression of Small-Scale Self-Focusing of High-Power Laser Beams by Spectral Bandwidth[J]. Acta Optica Sinica, 2012, 32(5): 519001
Category: Nonlinear Optics
Received: Dec. 5, 2011
Accepted: --
Published Online: Apr. 16, 2012
The Author Email: Jianqin Deng (d_j_q_001@163.com)