• Infrared and Laser Engineering
  • Vol. 44, Issue 8, 2429 (2015)
Xia Zuxue1、2、*, Liu Falin1, Chen Junxue3, Shang Liping2, Deng Hu2, and Xiong Liang2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
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    DOI: Cite this Article
    Xia Zuxue, Liu Falin, Chen Junxue, Shang Liping, Deng Hu, Xiong Liang. Impact of dipole photoconductive antenna structure on the THz radiation characteristics[J]. Infrared and Laser Engineering, 2015, 44(8): 2429 Copy Citation Text show less
    References

    [1] Cheng Wei, Wang Yingxin, Zhao Ziran. New research progress of photoconductive terahertz source[J]. Laser & Infrared, 2011, 41(6): 597-604. (in Chinese)

    [2] Hughes S, Tani M, Sakai K. Vector analysis of terahertz transients generated by photoconductive antennas in near-and far-field regimes[J]. Appl Phys, 2003, 93(8): 4880-4884.

    [3] Smith P R, Auston D H, Nuss M C. Subpicosccond photoconducting dipole antennas[J]. IEEE Journal of Quantum Electronics, 1988, 24(2): 255-260.

    [4] Huang Y, Khiabani N, Shen Y C, et al. Terahertz photoconductive antenna efficiency[C]//2011 International Workshop on Antenna Technology (iWAT), 2011: 152-156.

    [5] Ezdi K, Islam M N, Reddy Y A N, et al. A numerical study of photoconductive dipole antennas: the real emission frequency and an improved antenna design[C]//SPIE, 2006, 6194: 61940G: 1-9.

    [6] Liu Juan, Zhang Zhaoyun, Li Yinxin, et al. Terahertz radiation frequency spectrum of large-aperture GaAs photoconductor antennas Information and Electronic Engineering[J]. Information and Electronic Engineering, 2011, 9(3): 325-329. (in Chinese)

    [7] Miyamaru F, Saito Y, Yamamoto K, et al. Dependence of emission of terahertz radiation on geometrical parameters of dipole photoconductive antennas[J]. Appl Phys Lett, 2010, 96(211104): 1-4.

    [8] Irie K, Saigusa M, Takano K, et al. Analysis and estimation of spectrum characteristics for dipole photoconductive antenna that includes photocurrent and receiving antenna effects[C]//Infrared Millimeter Waves and 37th International Teraherz Electronics Conference IRMMW-THz, 2012: 1-2.

    [9] Moreno-Perez E, Pantoja M F, García1 S G, et al. Time domain simulation of THz photoconductive antennas [C]//6th European Conference on Antennas and Propagation (EUCAP), 2012: 1054-1057.

    [10] Kirawanich P, Yakura S J, Islam N E. Study of high-power wideband terahertz-pulse generation using integrated high-speed photoconductive semiconductor switches[J]. IEEE Journal of Plasma Science, 2009, 37(1): 219-228.

    [11] Zhisheng Piao, Masahito Tani, Kiyomi Sakai, et al. Carrier dynamics and terahertz radiations in photoconductive antenna [J]. Appl Phys, 2000, 39: 96-100

    [12] Zhang Liwei, Shang Liping, Tang Jinlong, et al. Simulation of radiation characteristics of 34 μm aperture GaAs dipole photoconductive antenna [J]. Infrared & Laser Engineering, 2013, 42(1): 108-112. (in Chinese)

    [13] Khiabani N, Huang Y, Shen Y C, et al. A novel simulation method for THz photoconductive antenna characterization[C]//Antennas and Propagation(EUCAP) 2013 7th European Conference, 2013: 751-754.

    CLP Journals

    [1] Xia Zuxue, Liu Falin, Deng Hu, Chen Junxue, Liu Quancheng. Frequency adjustable THz microstructured photoconductive antennas[J]. Infrared and Laser Engineering, 2018, 47(5): 520002

    Xia Zuxue, Liu Falin, Chen Junxue, Shang Liping, Deng Hu, Xiong Liang. Impact of dipole photoconductive antenna structure on the THz radiation characteristics[J]. Infrared and Laser Engineering, 2015, 44(8): 2429
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