[2] HU G H, ZHAO Y A, SHAO J D, et al.. Real-time damage event imaging reveals the absorber inducing laser damage with low density in solgel antireflective coatings [J]. J. Opt. Soc. Am. B-Opt. Phys., 2013, 30: 1186-1193.
[3] NIELSEN K H, ORZOL D K, KOYNOV S, et al.. Large area, low cost anti-reflective coating for solar glasses [J]. Sol Energy Mater. Sol Cells, 2014, 128: 283-288.
[4] SERMON P A, BADHEKA R. MgF2 xerogels [J]. J. Sol-Gel Sci. Technol., 2004, 32: 149-153.
[5] ASADOLLAHBAIK A, BODEN S A, CHARLTON M D, et al.. Reflectance properties of silicon moth-eyes in response to variations in angle of incidence, polarisation and azimuth orientation [J]. Opt. Express, 2014, 22: A402-A415.
[6] WALLRAFF G M, HINSBERG W D. Lithographic imaging techniques for the formation of nanoscopic features [J]. Chem. Rev., 1999, 99(7): 1801-1822.
[8] MORI T, HASEGAWA K, HATANO T, et al.. Surface-relief gratings with high spatial frequency fabricated using direct glass imprinting process [J]. Opt. Lett., 2008, 33: 428-430.
[9] PARK K C, CHOI H J, CHANG C H, et al.. Nanotextured silica surfaces with robust superhydrophobicity and omnidirectional broadband supertransmissivity [J]. ACS Nano, 2012, 6: 3789-3799.
[10] ZHAO Y, WANG J S, MAO G Z. Colloidal subwavelength nanostructures for antireflection optical coatings[J].Optics Letters, 2005, 30(14): 1885-1887.
[11] STOBER W, FINK A. Controlled growth of monodisperse silica spheres in the micron size range[J]. J. Colloid Interface Sci., 1968, 26: 62-69.
[12] ANTONY S D, KUNIAKI N. Continuous convective assembling of fine particles into two-dimensional arrays on solid surfaces[J]. Langmuir, 1996, 12(5): 1303-1311.
[13] MOTAMEDI M E, SOUTHWELL W H, GUNING W J. Antireflection surfaces in silicon using binary optics technology [J]. Applied Optics, 1992, 31: 4371-4376.
[14] ALDONA B, SIMAS S, ANDRIUS M. Sol-gel derived optical coating with controlled parameters[J]. Materials Science, 2006, 12(4): 283-286.
[15] LIU Y, SHEN J, ZHOU B, et al.. Effect of hydrophobicity on the stability of sol-gel silica coatings in vacuum and their laser damage threshold [J]. J. Sol-Gel Sci. Technol., 2013, 68: 81-87.
[16] LIU Y, SHEN J, LI X G, et al.. Effect of hydrophobicity on the vacuum-contamination resistance and laser damage threshold of sol-gel silica coating [J]. Chinese Journal of Inorganic Chemistry, 2013, 29: 1339-1344.