Development of 2.5 THz suspended porous microstructured fiber based on cyclic-olefin copolymer
Chen, Qi1; Zhu, Wenjing1; Kong, Depeng2; He, Xiaoyang1; Li, Bo1; Miao, Jing2; Luo, Zhenfei3; Zhou, Xun3; Yang, Chun1; Zhang, Jian1
刊名optik
2017-09
卷号145页码:56-60
ISSN号00304026
通讯作者li, bo (libocaepiee@163.com)
产权排序2
英文摘要

efficient transmission of terahertz (thz) wave is very important in the development of thz technology. polymer microstructured fiber is ideal in thz waveguide transmission for its advantages of low loss, low dispersion and good flexibility to bend. based on the full vector finite element method, a suspended porous microstructured fiber with the operating frequency of 2.5 thz was designed. fiber samples made of cyclic-olefin copolymer were fabricated, and their transmission performances were measured by using the co2pump laser thz source. the measured minimum loss is 0.17 db/cm and average loss is about 0.5 db/cm. the fluctuation of transmission loss is less than 5% when the fiber is bent from 0° to 90°, showing good flexibility of bending. the measured mode field distributions of the output tips show that the thz wave propagates with fundamental mode, and the energy is well confined in the core of the fiber. © 2017 elsevier gmbh

收录类别EI
语种英语
内容类型期刊论文
源URL[http://ir.opt.ac.cn/handle/181661/29192]  
专题西安光学精密机械研究所_信息光子学研究室
作者单位1.Institute of Electronic Engineering, China Academy of Engineering Physics, Mianyang; 621999, China
2.Xian Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xian, 710119, China
3.Research Center of Laser Fusion, China Academy of Engineering Physics, Chengdu; 610041, China
推荐引用方式
GB/T 7714
Chen, Qi,Zhu, Wenjing,Kong, Depeng,et al. Development of 2.5 THz suspended porous microstructured fiber based on cyclic-olefin copolymer[J]. optik,2017,145:56-60.
APA Chen, Qi.,Zhu, Wenjing.,Kong, Depeng.,He, Xiaoyang.,Li, Bo.,...&Zhang, Jian.(2017).Development of 2.5 THz suspended porous microstructured fiber based on cyclic-olefin copolymer.optik,145,56-60.
MLA Chen, Qi,et al."Development of 2.5 THz suspended porous microstructured fiber based on cyclic-olefin copolymer".optik 145(2017):56-60.
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