• Acta Optica Sinica
  • Vol. 36, Issue 2, 226001 (2016)
Liu Yan*, Fan Fei, Chen Sai, Yang Lei, Chen Meng, Deng Decai, Wang Xianghui, and Chang Shengjiang
Author Affiliations
  • [in Chinese]
  • show less
    DOI: 10.3788/aos201636.0226001 Cite this Article Set citation alerts
    Liu Yan, Fan Fei, Chen Sai, Yang Lei, Chen Meng, Deng Decai, Wang Xianghui, Chang Shengjiang. Terahertz Optical Properties of Nematic Liquid Crystals Depended on Different External Fields[J]. Acta Optica Sinica, 2016, 36(2): 226001 Copy Citation Text show less
    References

    [1] Fan Fei, Hou Yu, Jiang Ziwei, et al.. Terahertz modulator based on insulator-metaltransition in photonic crystal waveguide[J]. Appl Opt, 2012, 51(20): 4589-4596.

    [2] Liu Zhiqiang, Chang Shengjiang, Wang Xiaolei, et al.. Thermally controlled terahertz metamaterial modulator based on phase transition of VO2 thin film[J]. Acta Physica Sinica, 2013, 62(13): 130702.

    [3] Fan Fei, Guo Zhan, Bai Jinjun, et al.. Magnetically tunable magneto-photonic crystals for multifunctional terahertz polarization controller [J]. Acta Optica Sinica, 2011, 60(8): 084219.

    [4] Guo Zhan, Fan Fei, Bai Jinjun, et al.. Magnetically tunable magnetic photonic crtstal for terahertz switch and filter[J]. Acta Physica Sinica, 2011, 60(7): 074218.

    [5] Wang Yong, Zhang Dengguo, Ouyang Zhengbiao, et al.. Four-port cross-shaped circulator based on two-dimensional magneto-photonic crystals[J]. Acta Physica Sinica, 2014, 34(10): 1023001.

    [6] Fan Fei, Li Wei, Gu Wenhao, et al.. Cross-shaped metal–semiconductor–metal plasmonic crystal forterahertz modulator[J]. Photonics and Nanostructures–Fundamentals and Applications, 2013, 11: 48-54.

    [7] Chen Sai, Fan Fei, Chang Shengjiang, et al.. Tunable optical and magneto-optical properties of ferrofluid in the terahertz regime[J]. Opt Express, 2014, 22(6): 6313-6321.

    [8] Chen Chaoyuan, Hsieh Chofan, Lin Yeafeng, et al.. Magnetically tunable room-temperature 2π liquid crystal terahertz phase shifter[J]. Opt Express, 2004, 12(12): 2625-2630.

    [9] Hsieh Chofan, Pan Rupin, Tang Tsungta, et al.. Voltage-controlled liquid-crystal terahertz phase shifter and quarter-wave plate[J]. Opt Lett, 2006, 31(8): 1112-1114.

    [10] Chen Chaoyuan, Tsai Tsongru, Pan Ciling, et al.. Room temperature terahertz phase shifter based on magnetically controlled birefringence in liquid crystals[J]. Appl Phys Lett, 2003, 83(22): 4496-4499.

    [11] Wang Changhui, Kuang Dengfeng, Chang Shengjiang, et al.. Terahertz wave confinement in pillar photonic crystal with a tapered waveguide and a point defect[J]. Chin Phys Lett, 2012, 29(12): 124205.

    [12] Ghattan Z, Hasek T, Wilk R, et al.. Sub-terahertz on–off switch based on a two-dimensional photonic crystal infiltrated by liquid crystals [J]. Opt Commun, 2008, 281(18): 4623-4625.

    [13] Wu Ben, Zhang Hui, Zhu Liangdong, et al.. Magnetically tunable liquid crystal terahertz switch based on Bragg fiber[J]. Acta Physica Sinica, 2009, 58(3): 1838-1843.

    [14] Fan Fei, Hou Yu, Chang Shengjiang. Metallic photonic crystals filled with liquid crystal for terahertz tunable filters[C]. Science China Information Sciences, 2011.

    [15] Zhang Hui, Guo Peng, Chen Ping, et al.. Liquid-crystal-filled photonic crystal for terahertz switch and filter[J]. J Opt Soc Am B, 2009, 26(1): 101-106.

    [16] Zhu Huaxin, Guo Ying, Li Shuai, et al.. Study on a novel frequency selective surface element[J]. Laser & Optoelectronics Progress, 2014, 51(10): 101602.

    [17] Lin Chiajen, Li Yutai, Hsieh Chofan, et al.. Manipulating terahertz wave by a magnetically tunable liquid crystal phase grating[J]. Opt Express, 2008, 16(5): 2995-3001.

    [18] D Hovhannisyan, N Tabiryan, H Margaryan, et al.. Electrically controlled phase gratings for terahertz radiation based on nematic liquid crystal[C]. 2nd International Conference on Mathematical Modeling in Physical Sciences, 2013.

    [19] Wang Jicheng, Liang Xiuye, Xia Xiushan, et al.. Controlling light based on metal slit array structure filling in liquid crystal[J]. Laser & Optoelectronics Progress, 2014, 51(12): 122401.

    [20] Pan Rupin, Hsieh Chofan, Pan Ciling, et al.. Temperature-dependent optical constants and birefringence of nematic liquid crystal 5CB in the terahertz frequency range[J]. J Appl Phys, 2008, 103(9): 093523.

    [21] Pan R P, Tsai T R, Chen C Y, et al.. Optical constants of two typical liquid crystals 5CB and PCH5 in the THz frequency range[J]. J Biol Phys, 2003, 29: 335-338.

    [22] Pan Rupin, Tsai Tsongru, Chen Chaoyuan, et al.. The refractive indices of nematic liquid crystal 4'-npentyl-4-cyanobiphenyl in the THz frequency range[J]. Mol Cryst Liq Cryst, 2004, 409: 137-144.

    [23] Tsai Tsongru, Chen Chaoyuan, Pan Ciling, et al.. Terahertz time-domain spectroscopy studies of the optical constants of the nematic liquid crystal 5CB[J]. Appl Opt, 2003, 42(13): 2372-2376.

    [24] Yang Chanshan, Lin Chiajen, Pan Rupin, et al.. The complex refractive indices of the liquid crystal mixture E7 in the terahertz frequency range[J]. J Opt Soc Am B, 2010, 27(9): 1866-1872.

    [25] NicoVieweg Mohammad, Khaled Shakfa Benedikt, Scherger Martin, et al.. THz properties of nematic liquid crystals[J]. J Infrared Milli Terahz Waves, 2010, 31: 1312-1320.

    [26] Rafa Wilk Nico, Vieweg Olaf, Kopschinski Tomasz, et al.. THz spectroscopy of liquid crystals from the CB family[J]. J Infrared Milli Terahz Waves, 2009, 30: 1139-1147.

    [27] Fan Fei, Chen Sai, Lin Wei, et al.. Magnetically tunable terahertz magnetoplasmons in ferrofluid-filled photonic crystals[J]. Appl Phys Lett, 2013, 103: 161115.

    [28] V Fréedericksz, V Zolina. Forces causing the orientation of an anisotropic liquid[J]. Trans Faraday Soc, 1933, 29: 919-930.

    [29] Fan Fei, Gu Wenhao, Wang Xianghui, et al.. Real-time quantitative terahertz microfluidic sensing based on photonic crystal pillar array [J]. Appl Phys Lett, 2013, 102: 121113.

    [30] Fan Fei, Gu Wenhao, Chen Sai, et al.. State conversion based on terahertz plasmonics with vanadium dioxide coating controlled by optical pumping[J]. Opt Lett, 2013, 38(9): 1582-1584.

    [31] Durbin S D, Arakelian S M, Shen Y R. Optical-field-induced birefringence and Freedericksz transition in a nematic liquid crystal[J]. Phys Rev Lett, 1981, 47(19): 1411-1414.

    CLP Journals

    [1] Fan Changkun, Li Qi, Zhao Yongpeng, Chen Deying. Measurement for 2.52 THz Back Scattering Intensity of Rectangular Aluminum Plate[J]. Chinese Journal of Lasers, 2017, 44(12): 1214001

    [2] Chen Tao, Zhang Chaojie, Xu Chuanpei. Study on Terahertz Time-Domain Spectroscopy of Tartaric Acid Isomers[J]. Laser & Optoelectronics Progress, 2017, 54(8): 81202

    Liu Yan, Fan Fei, Chen Sai, Yang Lei, Chen Meng, Deng Decai, Wang Xianghui, Chang Shengjiang. Terahertz Optical Properties of Nematic Liquid Crystals Depended on Different External Fields[J]. Acta Optica Sinica, 2016, 36(2): 226001
    Download Citation