• Opto-Electronic Engineering
  • Vol. 37, Issue 8, 29 (2010)
HOU Chun-ning*, LIU Xiao, LI Xin-ying, FANG Yuan, SHAO Yu-feng, HUANG De-xiu, and CHI Nan
Author Affiliations
  • [in Chinese]
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    DOI: Cite this Article
    HOU Chun-ning, LIU Xiao, LI Xin-ying, FANG Yuan, SHAO Yu-feng, HUANG De-xiu, CHI Nan. A Novel Scheme for Generating 0.1 Tera Hertz Signal over Fiber and Characteristic Analysis[J]. Opto-Electronic Engineering, 2010, 37(8): 29 Copy Citation Text show less
    References

    [1] Piesiewicz R,Jansen C,Mittleman D,et al. Scattering Analysis for the Modeling of THz Communication Systems [J]. IEEE Trans Ants Prop(S0018-926X),2007,55(11):3002-3009.

    [2] ZHANG Jian,CHEN Hong-wei,CHEN Ming-hua,et al. A Photonic Microwave Frequency Quadrupler Using Two Cascaded Intensity Modulators with Repetitious Optical Carrier Suppression [J]. IEEE Photonics Technology Letters(S1041-1135),2007,19(14):1057-1059.

    [3] ZHU Mei-wei,LIN Ru-jian,YE Jia-jun,et al. Novel Millimeter-Wave Radio-over-Fiber System Using Dual-Electrode Mach-Zehnder Modulator for Millimeter-Wave Generation [J]. Opto-Electronic Engineering,2008,35(4):126-130.

    [4] SIDDIQUE Muhammad,ZHANG Wei,LI Zhuo,et al. Theoretical design of terahertz-wave parametric oscillator using LiNbO3 crystal [J]. Opto-Electronic Engineering,2006,33(3):114-118.

    [5] Schmuck H. Comparison of optical millimeter-wave system concepts with regard to chromatic dispersion [J]. Electronics Letters(S0013-5194),1995,31(21):1848-1849.

    [6] Ouellette F,Cliché J,Gagnon S. All-fiber devices for chromatic dispersion compensation based on chirped distributed resonantcoupling [J]. Journal of Lightwave Technology(S0733-8724),1994,12(10):1728-1738.

    [7] Kuri T,Kitayama K. Optical heterodyne detection technique for densely multiplexed millimeter-wave-band radio-on-fiber systems [J]. Journal of Lightwave Technology(S0733-8724),2003,21(12):3167-3179.

    [8] Goldberg L,Taylor H F,Weller J F,et al. Microwave signal generation with injection locked laser diodes [J]. Electronics Letters(S0013-5194),1983,19(13):491-493.

    [9] Fan Z ,Dagenais M. Optical generation of a mHz-linewidth microwave signal using semiconductor lasers and a discriminator-aided phase-locked loop [J]. IEEE Transactions on Microwave Theory and Techniques(S0018-9480),1997,45(8):1296-1300.

    [10] Ramos R T,Gallion P,Erasme D,et al. Optical injection locking and phase-lock loop combined systems [J]. Optical Letters(S0146-9592),1994,19(1):4-6.

    [11] Sun J,Dai Y,Zhang Y,et al. Stable dual-wavelength DFB fiber laser with separate resonant cavities and its application in tunable microwave generation [J]. IEEE Photonics Technology Letters(S1041-1135),2006,18(24):2587-2589.

    [12] O’Reilly J J,Lane P M. Fiber-supported optical generation and delivery of 60 GHz signals [J]. Electronics Letters (S0013-5194),1994,30(16):1329-1330.

    [13] Sieben Mike,Conradi Jan,Dodds David E. Optical Single Sideband Transmission at 10 Gb/s Using Only Electrical Dispersion Compensation [J]. Journal of Lightwave Technology(S0733-8724),1999,17(10):1742-1749

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    HOU Chun-ning, LIU Xiao, LI Xin-ying, FANG Yuan, SHAO Yu-feng, HUANG De-xiu, CHI Nan. A Novel Scheme for Generating 0.1 Tera Hertz Signal over Fiber and Characteristic Analysis[J]. Opto-Electronic Engineering, 2010, 37(8): 29
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