• Acta Photonica Sinica
  • Vol. 39, Issue 1, 16 (2010)
FANG Ping1、2、*, YANG Zhi1, WANG Yi-shan1, ZHAO Wei1, ZHANG Ting1、2, LI Cheng1, DUAN Zuo-liang1, and DUAN Kai-liang1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3788/gzxb20103901.0016 Cite this Article
    FANG Ping, YANG Zhi, WANG Yi-shan, ZHAO Wei, ZHANG Ting, LI Cheng, DUAN Zuo-liang, DUAN Kai-liang. An Improved Simulation Method of Supercontinuum Generated by Sub-nanosecond Pulse[J]. Acta Photonica Sinica, 2010, 39(1): 16 Copy Citation Text show less
    References

    [1] LIU Wei-hua,SONG Xiao-zhong,WANG Yi-shan,et al. Experimental re search of supercontinuum generation by femto second pulse in highly nonlinear photonic crystal fiber[J]. Acta Phys Sin,2008,57(2): 917-922.

    [2] WANG Zhi-guang,ZENG Zhi-nan,LI Ru-xin,et al. Measurement of gouy phase shift by supercontinuum spectral interference[J]. Acta Optical Sinica,2007,27(10): 1905-1908.

    [3] CHEN Xiao-gang,HUANG De-xiu,YUAN Xiu-hua,et al. Wavelength division multiplexing/ optical code divison multiplexing system based on supercontinuum and supersturctured fiber bragg grating[J]. Chinese Journal of Lasers,2008,35(1):77-81.

    [4] AUDE R,PHILIPPE L,PHILIPPE R,et al. Supercontinuum generation in a nonlinear Yb-doped,double-clad,microstructured fiber[J]. J Opt Soc Am B,2007,24(4): 788-791.

    [5] LI Xiao-qing,ZHANG Shu-min,LI Dan,et al. Experimental and numerical study of supercontinuum generation in photonic crystal fiber[J]. Acta Photonica Sinica,2008,37(9):1805-1809.

    [6] YU Yong-qin,RUAN Shuang-chen,DU Chen-lin,et al. Spectral broadening in the 1.3 μm region using a 1.8-m-long photonic crystal fiber by femtosecond pulses from an optical param etric amplifier[J]. Acta Photonica Sinica,2005,34(4):481-484.

    [7] GOERY G,BERTRAND K,PAUL K,et al.Harmonic extended supercontinuum generation and carrier envelope phase dependent spectral broadening in silica nanowires[J]. Opt Express,2008,16(15): 10886-10893.

    [8] PETER M M,MICHAEL H F,CARSTEN L T,et al. Back-seeding of higher order gain processes in picosecond supercontinuum generation[J]. Opt Express,2008,16(16):11954-11968.

    [9] KAREN M H,HENRIK N P,JAN T,et al. Initial steps of supercontinuum generation in photonic crystal fibers[J]. J Opt Soc Am B,2003,20(9): 1887-1893.

    [10] ARNAUD M,MAXIME B,MOHAMED B,et al. Tailoring CW supercontinuum generation in microstructured fibers with two-zero dispersion wavelengths[J]. Opt Express,2007,15(18): 11553- 11563.

    [11] KOBTSEV S M,SMIRNOV S V. Supercontinuum fiber sources under pulsed and CW pumping[J].Laser Physics,2007,17(11): 1303-1305.

    [12] MICHAEL H F,Supercontinuum generation in photonic crystal fibres: Modelling and dispersion engineering for spectral shaping[M].Denmark: University of Denmark,2006:55-66.

    [13] MALAY K,CHENAN X,XIUQUAN M,et al. Power adjustable visible supercontinuum generation using amplified nanosecond gainswitched lase diode[J]. Opt Express,2008,16(9): 6194-6201.

    [14] GOVIND P A. Nonlinear fiber optics[M]. 3rd ed. America: Academic Press,2001.

    [15] CUMBERLAND B A,TRAVERS J C,POPOV S V,et al. High power 29 W CW supercontinuum source[C]. Conference On Lasers And Electro-Optics (CLEO),San Jose,California,2008.

    [16] ANPING L,MARC A N,ROY D M. 7.2 W supercontinuum generation in photonic crystal fibers pumped by a nanosecond fiber laser[C].SPIE,Bellingham,WA,2005

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    FANG Ping, YANG Zhi, WANG Yi-shan, ZHAO Wei, ZHANG Ting, LI Cheng, DUAN Zuo-liang, DUAN Kai-liang. An Improved Simulation Method of Supercontinuum Generated by Sub-nanosecond Pulse[J]. Acta Photonica Sinica, 2010, 39(1): 16
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