[2] Zhu Jun, Zhu Jinglei, Feng Chen, et al. Design of refracting reflecting infrared detection optical system with high spatial resolution[J]. Infrared and Laser Engineering, 2013, 42(5): 1280-1284. (in Chinese)
[3] Ke Changjun, Kong Xinyi, Wang Ran, et al. Research progress on mid-IR Fe: ZnSe laser technology[J]. Infrared and Laser Engineering, 2016, 45(3): 0305002. (in Chinese)
[6] McManamon P F, Bos P J, Escuti M J, et al. A review of phased array steering for narrow-band electrooptical systems[J]. Proceedings of the IEEE, 2009, 97(6): 1078-1096.
[7] Hu L, Kim H S, Lee J Y, et al. Scalable coating and properties of transparent, flexible, silver nanowire electrodes[J]. ACS Nano, 2010, 4(5): 2955-2963.
[8] Hecht D S, Hu L, Irvin G. Emerging transparent electrodes based on thin films of carbon nanotubes, graphene, and metallic nanostructures[J]. Advanced Materials, 2011, 23(13): 1482-1513.
[9] Zhu J, Xue M, Shen H, et al. Plasmonic effects for light concentration in organic photovoltaic thin films induced by hexagonal periodic metallic nanospheres[J]. Applied Physics Letters, 2011, 98(15): 151110.
[10] Lan Y, Lin F, Li Y, et al. Gallium nitride porous microtubules self-assembled from wurtzite nanorods[J]. Journal of Crystal Growth, 2015, 415: 139-145.
[11] Lee G H, Cooper R C, An S J, et al. High-strength chemical-vapor-deposited graphene and grain boundaries[J]. Science, 2013, 340(6136): 1073-1076.
[12] Bae S, Kim H, Lee Y, et al. Roll-to-roll production of 30-inch graphene films for transparent electrodes[J]. Nature Nanotechnology, 2010, 5(8): 574-578.
[13] Lee D, Lee H, Ahn Y, et al. High-performance flexible transparent conductive film based on graphene/AgNW/graphene sandwich structure[J]. Carbon, 2015, 81: 439-446.
[14] Wu S T, Efron U, Hess L D. Infrared birefringence of liquid-crystals[J]. Applied Physics Letters, 1984, 44(11): 1033-1035.
[15] Wu S T, Cox R J. Potential infrared liquid-crystals[J]. Liquid Crystals, 1989, 5(5): 1415-1424.
[16] Wu S T, Wang Q H, Kempe M D, et al. Perdeuterated cyanobiphenyl liquid crystals for infrared applications[J]. Journal of Applied Physics, 2002, 92(12): 7146-7148.
[17] Chen Yuan, Xianyu Haiqing. Low absorption liquid crystals for mid-wave infrared applications[J]. Optics Express, 2011, 19(11): 10843.
[18] Hu M, An Z, Li J, et al. Tolane liquid crystals bearing fluorinated terminal group and their mid-wave infrared properties[J]. Liquid Crystals, 2014, 41(12): 1696-1702.