[1] K. A. Bruecker, S. Jorna, Laser-driven fusion, Rev. Mod. Phys. 46 (1974) 325-367
[2] S. Skupsky, K. Lee, Uniformity of energy deposition for laser driven fusion, J. Appl. Phys. 54 (1983) 3662-3671.
[3] P. L. Kelly, Self-focusing of optical beams, Phys. Rev. Lett. 15 (1965) 1005-1008.
[4] V. R. Cositich, B.C. Johnson, Apertures to shape high-power beams, Laser Focus 10 (1974) 43~6
[5] J. T. Hunt, P.A. Renard, W.W. Simmons, Improved performance of fusion lasers using the imaging properties of multiple spatial filters, Appl. Opt. 16 (1977) 779-782.
[6] Y. Kato, K. Mima, N, Miyanaga, S. Arinaga, Y. Kitagawa, M. Nakatsuka, C. Yamanaka, Random phasing of high-power lasers for uniform target acceleration and plasma-instability suppression, Phys. Rev. Lett. 53 (1984) 1057-1060.
[7] X. M. Deng, X. C. Liang, Z. Z. Chen, W. Y. Yu, R. Y. Ma, Uniform illumination of large targets using a lens array, Appl. Opt. 25 (1986) 377-381
[8] S. Skupsky, R. W. Short, T. Kessler, R. S. Craxton, S. Letzring, J. M. Soures, Improved laser-beam uniformity using the angular dispersion of frequency-modulated light, J. Appl. Phys. 6G (1989) 3456-3462.
[9] H. Nakano, K. Tsubakimoto, N. Miyanaga, M. Nakatsuka, T. Kanabe, H. Azechi, T. Jitsuno, S. Nakai, Spectrally dispersed amplified spontaneous emission for improving irradiation uniformity into high power Nd:glass laser system, J. Appl. Phys. 73 (1993) 2122-2130
[10] Two-dimensional SSD on OMEGA, LLE Rev. 69 (1996) 1~10.
[11] J. E. Rothenberg, Comparison of beam-smoothing methods for direct-drive inertial confinement fusion, J. Opt. Soc. Am. B 14 (1997) 1664-1671.
[12] H. A. Rose, S. Ghosal, Effect of smoothing by spectral dispersion on flow induced laser beam deflection: the random phase modulation scheme, Phys. Plasmas 5 (1998) 775-781.
[13] Q. F. Tan, Q. S. He, Y. B. Yan, G. F. Jin, D. Y. Xu, Spatial-frequency spectrum analysis of the performance of diffractive optical element for beam smoothing, Optik 113 (2002) 163-166.
[14] G. Miyaji, N. Miyanaga, S. Urushihara, K. Suzuki, S. Matsuoka, M. Nakatsuka, A. Morimoto, T. Kobayashi, Three-directional spectral dispersion for smoothing of a laser irradiance profile, Opt. Lett. 27 (2002) 725-727.
[15] Q. F. Tan, Y. B. Yan, G. F. Jin, Application of spatial-frequency spectrum method on diffractive optical element for beam smoothing, Optik 115 (2004) 370-374.
[16] R. W. Peng, Y. X. Ye, Z. X. Tang, D. Y. Fan, Transverse intensity distributions of broadband laser modulated by a hard-edged aperture, J. Opt. Soc. Am. A 22 (2005) 1903-1908.
[17] M. Born, E. Wolf, Principles of Optics, seventh ed., Cambridge University, Cambridge, 1999.
[18] F. Lytle, An introduction to diffraction. Part I: The near field, Appl. Spectrosc. 53 (1999) 212A-226A.