• Acta Optica Sinica
  • Vol. 34, Issue 7, 723003 (2014)
Li Shanshan*, Chang Shengjiang, Zhang Hao, and Liu Weiwei
Author Affiliations
  • [in Chinese]
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    DOI: 10.3788/aos201434.0723003 Cite this Article Set citation alerts
    Li Shanshan, Chang Shengjiang, Zhang Hao, Liu Weiwei. Terahertz Polarization Splitter Based on Filled Porous Fiber[J]. Acta Optica Sinica, 2014, 34(7): 723003 Copy Citation Text show less
    References

    [1] K Saitoh, Y Sato, M Koshiba. Coupling characteristics of dual-core photonic crystal fiber couplers [J]. Opt Express, 2003, 11(24): 3188-3195.

    [2] Cao Ye, Cui Danning, Tong Zhengrong, et al.. Dual-core photonic crystal fiber polarization splitter based on tellurite glass [J]. Chinese J Lasers, 2013, 40(6): 0605007.

    [3] Zhou Fei, Fei Hongming, Chen Zhihui, et al.. A high efficiency photonic crystal polarization beam splitter [J]. Laser & Optoelectronics Progress, 2013, 50(6): 062304.

    [4] Y J Chang, W L Li. Directional-coupler-based polarization splitting in asymmetric metal/multi-insulator configuration for optical nanocircuitry [J]. IEEE Photon Technol Lett, 2012, 24(6): 458-460.

    [5] Zhang Bin, Tan Xiaoling, Xue Ruiqiu, et al.. Polarization splitter based on double rectangular-core photonic crystal fibers [J]. Infrared and Laser Engineering, 2012, 41(3): 745-749.

    [6] Guo Chucai, Ye Weimin, Yuan Xiaodong, et al.. Research on subwavelength grating polarizing beam splitter [J]. Acta Optica Sinica, 2010, 30(9): 2690-2695.

    [7] Wang Jianwei, Dai Daoxin, Shi Yaocheng, et al.. Design of compact TE/TM polarization beam splitter based on silicon-on-insulator ridge nanowire directional coupler [J]. Laser & Optoelectronics Progress, 2010, 47(5): 051301.

    [8] Zhang Jinlong, Liu Xu, Li Yiyu, et al.. Polarization beam splitters based on one-dimensional metal-dielectric structure [J]. Acta Optica Sinica, 2008, 28(9): 1788-1792.

    [9] Lou Shuqin, Ren Guobin, Yan Fengping, et al.. Dispersion and polarization properties of near-rectangle core photonic crystal fibers [J]. Acta Physica Sinica, 2005, 54(3): 1229-1234.

    [10] J Saulnier, C Ramus, F Huet, et al.. Optical polarization-diversity receiver integrated on titanium-diffused lithium niobate [J]. IEEE Photon Technol Lett, 1991, 3(10): 926-928.

    [11] A Hassani, A Dupuis, M Skorobogatiy. Low loss porous terahertz fibers containing multiple subwavelength holes [J]. Appl Phys Lett, 2008, 92(7): 071101.

    [12] A Hassani, A Dupuis, M Skorobogatiy. Porous polymer fibers for low-loss terahertz guiding [J]. Opt Express, 2008, 16(9): 6340-6351.

    [13] S Atakaramians, S Afshar Vahid, B M Fischer, et al.. Porous fibers: a novel approach to low loss THz waveguides [J]. Opt Express, 2008, 16(12): 8845-8854.

    [14] J Bai, J Li, H Zhang, et al.. A porous terahertz fiber with randomly distributed air holes [J]. Appl Phys B, 2011, 103(2): 381-386.

    [15] N Chen, J Liang, L Ren. High-birefringence, low-loss porous fiber for single-mode terahertz-wave guidance [J]. Appl Opt, 2013, 52(21): 5297-5302.

    [16] A Dupuis, J Allard, D Morris, et al.. Fabrication and THz loss measurements of porous subwavelength fibers using a directional coupler method [J]. Opt Express, 2009, 17(10): 8012-8028.

    [17] A Dupuis, A Mazhorova, F Desevedavy, et al.. Propagation loss measurements of porous THz subwavelength fibers [C]. Rome: 2010 35th International Conference on Infrared Millimeter and Terahertz Waves (IRMMW-THz), 2010. 1-2.

    [18] D Wang, L Wang. Design of TOPAS microstructured fiber with ultra-flattened chromatic dispersion and high birefringence [J]. Opt Commun, 2011, 284(24): 5568-5571.

    [19] S Li, H Zhang, Y Hou, et al.. Terahertz polarization splitter based on orthogonal microstructure dual-core photonic crystal fiber [J]. Appl Opt, 2013, 52(14): 3305-3310.

    [20] A Argyros. Microstructured polymer optical fibers [J]. J Lightwave Technol, 2009, 27(11): 1571-1579.

    [21] G Emiliyanov, J B Jensen, O Bang, et al.. Localized biosensing with TOPAS microstructured polymer optical fiber [J]. Opt Lett, 2007, 32(5): 460-462.

    [22] K Nielsen, H K Rasmussen, A J Adam, et al.. Bendable, low-loss TOPAS fibers for the terahertz frequency range [J]. Opt Express, 2009, 17(10): 8592-8601.

    [23] P D Cunningham, N N Valdes, F A Vallejo, et al.. Broadband terahertz characterization of the refractive index and absorption of some important polymeric and organic electro-optic materials [J]. J Appl Phys, 2011, 109(4): 043505.

    CLP Journals

    [1] Liu Jing, Shen Jingling, Zhang Cunlin. Progress of Terahertz Polymer Waveguides[J]. Laser & Optoelectronics Progress, 2015, 52(8): 80003

    [2] Liu Mengnan, Li Mengxue, Jiang Chengyi, Yan Xu, Wan Yong. Research Progress on High Birefringence Terahertz Photonic Crystal Fibers[J]. Laser & Optoelectronics Progress, 2017, 54(9): 90006

    Li Shanshan, Chang Shengjiang, Zhang Hao, Liu Weiwei. Terahertz Polarization Splitter Based on Filled Porous Fiber[J]. Acta Optica Sinica, 2014, 34(7): 723003
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