献县液晶电视维修培训学校,浅说液晶中波红外光学相控阵关键技术研究进展

湖南阳光液晶电视维修培训学校【献县液晶电视维修培训技术栏目】为您详细介绍与浅说液晶中波红外光学相控阵关键技术研究进展相关的知识,中国光学期刊网——光电领域首选网络服务平台

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浅说液晶中波红外光学相控阵关键技术研究进展

浅说液晶中波红外光学相控阵关键技术研究进展
献县液晶电视维修培训学校浅说液晶中波红外光学相控阵关键技术研究进展】

综述了液晶中波红外相控阵(Mid-LCOPA)关键技术的研究进展。介绍了光学相控阵技术的基本原理,着重介绍近年来中波红外液晶材料的研究进展,包括: 三联苯类液晶、炔类液晶; 同时还介绍了中波红外透明导电膜的最新工艺技术和发展情况,包括: 石墨烯、金属网、石墨烯金属网复合膜。

关键词

Abstract

Progress on key technology of mid-infrared liquid crystal optical phased arrays was summarized. The fundamental principles and schemes were introduced. Meanwhile, graphene and mid-infrared liquid crystal were the key technique to realize the practical mid-infrared liquid crystal optical phased array. The latest development on these two technique were emphasized on the topic of non-mechanical mid-infrared laser radar system. The recent development on mid-infrared liquid crystal included tolane liquid crystals and fluorinated liquid crystal. The transparent spectrum and its composite were both given including their working conditions. The recent development on mid-infrared transparent conductive films included graphene, nano-metal-network, graphene-metal composite film. The fabrication process of each kind of film were given, also their properties such as transparent spectrum and mechanical attach forces were introduced in detail.

补充资料

中图分类号:TH74

DOI:10.3788/irla201645.0830003

所属栏目:激光雷达技术

基金项目:国家自然科学基金(61405029,91438108); 中央高校科研基本业务费(ZYGX2013J126); 光电信息控制和安全技术国防重点

收稿日期:2015-12-08

修改稿日期:2016-01-12

网络出版日期:--

作者单位    点击查看

贺晓娴:电子科技大学 光电信息学院,四川 成都 610054
汪相如:电子科技大学 光电信息学院,四川 成都 610054光电信息控制和安全技术重点实验室,河北 三河 065201
李 曼:光电信息控制和安全技术重点实验室,河北 三河 065201
胡明刚:西安近代化学研究所,陕西 西安 710065
柳建龙:电子科技大学 物理电子学院,四川 成都 610054
邱 琪:电子科技大学 光电信息学院,四川 成都 610054

联系人作者:贺晓娴(hexiaoxian2@163.com)

备注:贺晓娴(1996-),女,硕士生,主要研究方向为液晶光电子学。

【1】Xiao Yongchuan, Qu Pengfei, Zhou Jingran, et al. Integrated vector sum microwave photonic phase shifter based on asymmetric Mach-Zendner structure in SOI[J]. Chinese Journal of Optics, 2011, 4(4): 418-422. (in Chinese)
肖永川, 瞿鹏飞, 周敬然, 等. 基于SOI非对称马赫曾德尔结构的集成矢量和微波光子移相器[J]. 中国光学, 2011, 4(4): 418-422.

【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)
朱钧, 朱景雷, 冯辰, 等. 高分辨折反式红外探测系统光学设计[J]. 红外与激光工程, 2013, 42(5): 1280-1284.

【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)
柯常军, 孔心怡, 王然, 等. 中红外Fe: ZnSe激光技术最新研究进展[J]. 红外与激光工程, 2016, 45(3): 0305002.

【4】Sun Quanshe, Chen Kunfeng, Shi Xueshun. Mid infrared laser power stabilizer[J]. Infrared and Laser Engineering, 2015, 44(7): 2127-2131.(in Chinese)
孙权社, 陈坤峰, 史学舜. 中红外激光器功率稳定器技术[J]. 红外与激光工程, 2015, 44(7): 2127-2131.

【5】Feng Dejun, Huang Wenyu, Ji Pengyu, et al. Erbium-doped fiber ring cavity pulsed laser based on graphene saturable absorber[J]. Optics and Precision Engineering, 2013, 21(5): 1097-1101. (in Chinese)
冯德军, 黄文育, 纪鹏宇, 等. 基于石墨烯可饱和吸收体的掺铒光纤环形腔脉冲激光器[J]. 光学 精密工程, 2013, 21(5): 1097-1101.

【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.

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浅说液晶中波红外光学相控阵关键技术研究进展-献县液晶电视维修培训学校
浅说液晶中波红外光学相控阵关键技术研究进展