Chinese Journal of Lasers, Volume. 39, Issue 12, 1205002(2012)

Broadband Microwave Photonic Channelized Receiver Based on Superimposed Chirped Fiber Bragg Grating

Sun Guodan1、*, Wang Rong2, Pu Tao1, Zheng Jilin1, Xiong Jintian1, Fang Tao1, and Zhen Fei1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • show less
    References(15)

    [1] [1] J. Capmany, D. Novak. Microwave photonics combines two worlds[J]. Nature Photon., 2007, 1(6): 319~330

    [2] [2] D. B. Hunter, L. G. Edvell, M. A. Englund. Wideband microwave photonic channelised receiver[C]. International Topical Meeting on Microwave Photonics, 2005. 249~252

    [3] [3] M. S. Rogge, V. J. URick, F. Bucholtz. Analysis of an optical channelization technique for microwave applications[R]. Washington DC: Naval Research Laboratory, 2007. 1~14

    [4] [4] F. A. Volkening. Photonic Channelized RF Receiver Employing Dense Wavelength Division Multiplexing[P]. US Patent 724 583 3B1, 2007

    [5] [5] Ze Li, Xianmin Zhang, Hao Chi et al.. A reconfìgurable microwave photonic channelized receiver based on dense wavelength division multiplexing using an optical comb[J]. Opt. Commun., 2012, 285(9): 2311~2315

    [6] [6] Xiaojun Xie, Yitang Dai, Yu Ji et al.. Broadband photonic radio-frequency channelization based on a 39-GHz optical frequency comb[J]. Photon. Technol. Lett., 2012, 24(8): 661~663

    [7] [7] X. Zou, W. Pan, B. Luo et al.. Photonic approach for multiple-frequency-component measurement using spectrally sliced incoherent source[J]. Opt. Lett., 2010, 35(3): 438~440

    [9] [9] Yang Xiufeng, Peng Lei, Tong Zhengrong et al.. Design of tunable bandpass photonic microwave filter based on multi-wavelength fiber laser[J]. Acta Optica Sinica, 2012, 32(2): 0206005

    [10] [10] Y. G. Han, J. H. Lee, S. B. Lee et al.. Novel multiwavelength erbium-doped fiber and Raman fiber ring lasers with continuous wavelength spacing tunability at room temperature[J]. J. Lightwave Technol., 2007, 25(8): 2219~2225

    [11] [11] X. He, D. N. Wang, C. R. Liao. Tunable and switchable dual-wavelength single longitudinal mode erbium-doped fiber lasers[J]. J. Lightwave Technol., 2011, 29(6): 842~849

    [12] [12] Y. Kim, S. Doucet, S. LaRochelle. 50-channel 100-GHz-spaced multiwavelength fiber lasers with single-frequency and single-polarization operation[J]. Photon. Technol. Lett., 2008, 20(20): 1718~1720

    [14] [14] Niu Siliang, Rao Wei, Jiang Nuan et al.. Investigation on phase spectra of fiber Bragg gratings and the constructed Fabry-Pérot cavity[J]. Acta Optica Sinica, 2011, 31(8): 0806007

    [15] [15] Liufeng Li, Yan Li, Lisheng Chen. Loss measurement of high-finesse Fabry-Perot cavities[J]. Chinese J. Lasers, 2010, 37(12): 3075~3079

    Tools

    Get Citation

    Copy Citation Text

    Sun Guodan, Wang Rong, Pu Tao, Zheng Jilin, Xiong Jintian, Fang Tao, Zhen Fei. Broadband Microwave Photonic Channelized Receiver Based on Superimposed Chirped Fiber Bragg Grating[J]. Chinese Journal of Lasers, 2012, 39(12): 1205002

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: Optical communication

    Received: Jun. 26, 2012

    Accepted: --

    Published Online: Oct. 19, 2012

    The Author Email: Guodan Sun (chinacard4@163.com)

    DOI:10.3788/cjl201239.1205002

    Topics