Volume 45 Issue 12
Jan.  2017
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Hou Yu, Yang Huijing. Broadband terahertz polarization splitter based on orthogonal dual hollow core[J]. Infrared and Laser Engineering, 2016, 45(12): 1225005-1225005(5). doi: 10.3788/IRLA201645.1225005
Citation: Hou Yu, Yang Huijing. Broadband terahertz polarization splitter based on orthogonal dual hollow core[J]. Infrared and Laser Engineering, 2016, 45(12): 1225005-1225005(5). doi: 10.3788/IRLA201645.1225005

Broadband terahertz polarization splitter based on orthogonal dual hollow core

doi: 10.3788/IRLA201645.1225005
  • Received Date: 2016-04-12
  • Rev Recd Date: 2016-05-14
  • Publish Date: 2016-12-25
  • In terahertz frequencies, using refractive index matching coupling principle, a broadband polarization splitter based on orthogonal hollow core was designed. Compared with the traditional separation device, it has the following advantages:(1) the refractive index matching degree of dual-core is high, making the separation length of the corresponding polarization mode is very short; (2) the dual-core are filled with air, which can reduce the absorption loss to THz wave; (3) through the design, making the dual-core perpendicular, thus the refractive index curve of y polarization mode overlap with that of x polarization mode, greatly expanded the scope of bandwidth. Its working bandwidth reached 0.17 THz. In addition, because of its structure is simple and symmetry, the THz fiber is easy to fabricate, which has a high application value in the terahertz network.
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    [2] Guo Shiliang, Huang Hui, Tong Kai, et al. Polarization splitter based on highly birefringent dual-core photonic crystal fibers[J]. Infrared and Laser Engineering, 2014, 43(6):1864-1868. (in Chinese)郭士亮, 黄惠, 童凯, 等. 高双折射双芯光子晶体光纤偏振分束器[J]. 红外与激光工程, 2014, 43(6):1864-1868.
    [3] Fan Fei, Chen Sai, Wang Xianghui, et al. Terahertz refractive index sensing based on photonic column array[J]. IEEE Photonic Tech Lett, 2015, 27(5):478-481.
    [4] Li J, Mao Y, Lu C, et al. Polarization splitting of photonic crystal fiber with hybrid guidance mechanisms[J]. IEEE Photon Technic Lett, 2014, 23(8):1358-1361.
    [5] Yang Jing, Zhao Jiayu, Liu Weiwei, et al. Study of terahertz radiation from filamentation induced by ultrafast laser pulses[J]. Infrared and Laser Engineering, 2015, 44(3):996-1007. (in Chinese)杨晶, 赵佳宇, 刘伟伟, 等. 超快激光成丝产生太赫兹波的研究[J]. 红外与激光工程, 2015, 44(3):996-1007.
    [6] He Xiaoyang, Yang Chun, Chen Qi, et al. Design of terahertz photonic crystal fiber and antennna[J]. Infrared and Laser Engineering, 2015, 44(2):535-538. (in Chinese)何晓阳, 杨春, 陈琦, 等. 太赫兹光子晶体光纤与天线设计[J]. 红外与激光工程, 2015, 44(2):535-538.
    [7] Nielson K, Rasmussen H K, Adam A J, et al. Bendable, low loss Topas fibers for the terahertz frequency range[J]. Opt Express, 2009, 17(10):8592-8601.
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    [9] Chen M Y, Zhang Y K. Improved design of polarization-maintaining photonic crystal fibers[J]. Opt Lett, 2008, 33(5):2542-2544.
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Broadband terahertz polarization splitter based on orthogonal dual hollow core

doi: 10.3788/IRLA201645.1225005
  • 1. Department of Physics,Tangshan Normal University,Tangshan 063000,China

Abstract: In terahertz frequencies, using refractive index matching coupling principle, a broadband polarization splitter based on orthogonal hollow core was designed. Compared with the traditional separation device, it has the following advantages:(1) the refractive index matching degree of dual-core is high, making the separation length of the corresponding polarization mode is very short; (2) the dual-core are filled with air, which can reduce the absorption loss to THz wave; (3) through the design, making the dual-core perpendicular, thus the refractive index curve of y polarization mode overlap with that of x polarization mode, greatly expanded the scope of bandwidth. Its working bandwidth reached 0.17 THz. In addition, because of its structure is simple and symmetry, the THz fiber is easy to fabricate, which has a high application value in the terahertz network.

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