• Infrared and Laser Engineering
  • Vol. 46, Issue 9, 921002 (2017)
Ge Dongsen*, Xu Quan, Wei Minggui, Zhang Xueqian, and Han Jiaguang
Author Affiliations
  • [in Chinese]
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    DOI: 10.3788/irla201746.0921002 Cite this Article
    Ge Dongsen, Xu Quan, Wei Minggui, Zhang Xueqian, Han Jiaguang. Broadband terahertz quarter wave plate based on meander-line dielectric metamaterials[J]. Infrared and Laser Engineering, 2017, 46(9): 921002 Copy Citation Text show less
    References

    [1] Stoik C D, Bohn M J, Blackshire J L. Nondestructive evaluation of aircraft composites using transmissive terahertz time domain spectroscopy[J]. Opt Express, 2008, 16(21): 17039-17051.

    [2] Federici J F, Schulkin B, Huang F, et al. THz imaging and sensing for security applications-explosives, weapons and drugs[J]. Semiconductor Sci Technol, 2005, 20(7): S266-S280.

    [3] Piesiewicz R, Kleine-Ostmann T, Krumbholz N, et al. Short-range ultra-broadband terahertz communications: concepts and perspectives[J]. IEEE Antennas Propag Mag, 2007, 49(6): 24-39.

    [4] Lee Y S. Principles of Terahertz Science and Technology[M]. New York: Springer, 2009.

    [5] Su X, Ouyang C, Xu N, et al. Broadband terahertz transparency in a switchable metasurface[J]. IEEE Photonics J, 2015, 7(1): 5900108.

    [6] Chen H T, Padilla W J, Cich M J, et al. A metamaterial solid-state terahertz phase modulator[J]. Nature Photon, 2009, 3(3): 148-151.

    [7] Zhu Z, Zhang X, Gu J, et al. A metamaterial-based terahertz low-pass filter with low insertion loss and sharp rejection [J]. IEEE Trans THz Sci Technol, 2013, 3(6): 832-837.

    [8] O′Hara J F, Singh R, Brener I, et al. Thin-film sensing with planar terahertz metamaterials: sensitivity and limitations[J]. Opt Express, 2008, 16(3): 1786-1795.

    [9] Chen L, Wei Y, Zang X, et al. Excitation of dark multipolar plasmonic resonances at terahertz frequencies[J]. Sci Rep, 2016, 6: 22027.

    [10] Cong L, Cao W, Tian Z, et al. Manipulating polarization states of terahertz radiation using metamaterials[J]. New J Phys, 2012, 14(11): 115013-115023.

    [11] Cong L, Cao W, Zhang X, et al. A perfect metamaterial polarization rotator[J]. Appl Phys Lett, 2013, 103(17): 171107.

    [12] Cheng Y, Withayachumnankul W, Upadhyay A, et al. Ultrabroadband reflective polarization convertor for terahertz waves [J]. Appl Phys Lett, 2014, 105(18): 181111.

    [13] Cong L, Xu N, Gu J, et al. Highly flexible broadband terahertz metamaterial quarter-wave plate[J]. Laser Photonics Rev, 2014, 8(4): 626-632.

    [14] Kaveev A, Kropotov G, Tsypishka D, et al. Tunable wavelength terahertz polarization converter based on quartz waveplates[J]. Appl Opt, 2014, 53(24): 5410-5415.

    [15] Lin X, Wu J, Hu W, et al. Self-polarizing terahertz liquid crystal phase shifter[J]. AIP Adv, 2011, 1(3): 232-234.

    [16] Scherger B, Scheller M, Vieweg N, et al. Paper terahertz wave plates[J]. Opt Express, 2011, 19(25): 24884-24889.

    [18] Goldstein D, Goldstein D H. Polarized Light[M]. New York: Marcel Dekker Inc, 2003.

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    [1] ZHAO Ya-juan, ZHOU Bi-cheng, ZHANG Han, ZHANG Ting, LI Bao-yi, WANG Dong-hong. Broadband Tunable Filter Based on Square Loop Metamaterial[J]. Acta Photonica Sinica, 2018, 47(7): 723003

    Ge Dongsen, Xu Quan, Wei Minggui, Zhang Xueqian, Han Jiaguang. Broadband terahertz quarter wave plate based on meander-line dielectric metamaterials[J]. Infrared and Laser Engineering, 2017, 46(9): 921002
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