• Frontiers of Optoelectronics
  • Vol. 1, Issue 1, 101 (2008)
Bo LIU, Ruobing ZHANG*, Huagang LIU, Jing MA, Chen ZHU, and Qingyue WANG
Author Affiliations
  • College of Precision Instrument and Opto-electronics Engineering, Key Laboratory of Optoelectronics Information and Technical Science, Tianjin University, Tianjin 300072, China
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    DOI: 10.1007/s12200-008-0014-4 Cite this Article
    Bo LIU, Ruobing ZHANG, Huagang LIU, Jing MA, Chen ZHU, Qingyue WANG. Investigation of spectral bandwidth of BBO-I phase matching non-collinear optical parametric amplification from visible to near-infrared[J]. Frontiers of Optoelectronics, 2008, 1(1): 101 Copy Citation Text show less
    References

    [1] Baltuska A, Fuji T, Kobayashi T. Visible pulse compression to 4 fs by optical parametric amplification and programmable dispersion control. Optics Letters, 2002, 27(5): 306-308

    [2] Krylov V, Kalintsev A, Rebane A, et al. Noncollinear parametric generation in LiIO3 and beta-barium borate by frequency-doubled femtosecond Ti:sapphire laser pulses. Optics Letters, 1995, 20(2): 151-153

    [3] Wilhelm T, Piel J, Riedle E. Sub-20-fs pulses tunable across the visible from a blue-pumped single-pass noncollinear parametric converter. Optics Letters, 1997, 22(19): 1494-1496

    [4] Shirakawa A, Kobayashi T. Noncollinear phase- and groupvelocity matching of optical parametric amplifier for ultrashort pulse generation. IEICE Transactions on Electronics, 1998, E81C(2): 246-253

    [5] Riedle E, Beutter M, Lochbrunner S, et al. Generation of 10 to 50 fs pulses tunable through all of the visible and the NIR. Applied Physics B, 2000, 71(3): 457-465

    [6] Liu H J, Zhao W, Chen G F, et al. Investigation of spectral bandwidth of optical parametric amplification. Applied Physics B, 2004, 79(5): 569-576

    [7] Leng Y X, Jin S Q, Peng J H, et al. Investigation of noncollinear type-I phase matched optic parametric amplification using BBO crystal. Chinese Journal of Lasers, 2001, A28(11): 977-980 (in Chinese)

    [8] Liu H J, Chen G F, Zhao W, et al. Study on the bandwidth of three-wave mixing optical parametric amplifiers. Chinese Journal of Lasers, 2002, A29(8): 680-686 (in Chinese)

    [9] Yang X D, Xu Z Z, Zhang Z Q, et al. Experimental study on the gain bandwidth of non-collinear type-I optic parametric chirped pulse amplification using BBO crystal. Acta Optica Sinca, 2000, 20(8): 1151-1152 (in Chinese)

    [10] Szabo G, Bor Z. Broadband frequency doubler for femtosecond pulses. Applied Physics B, 1990, 50(1): 51-54

    [11] Martinez O E. Achromatic phase matching for second harmonic generation of femtosecond pulses. IEEE Journal of Quantum Electronics, 1989, 25(12): 2464-2468

    [12] Baum P, Lochbrunner S, Riedle E. Tunable sub-10-fs ultraviolet pulses generated by achromatic frequency doubling. Optics Letters, 2004, 29(14): 1686-1688

    [13] Nabekawa Y, Midorikawa K. Group-delay-dispersionmatched sum-frequency mixing for the indirect phase control of deep ultraviolet pulses in the sub-20-fs regime. Applied Physics B, 2004, 78(5): 569-581

    [14] Barnes N P, Corcoran V J. Parametric generation processes: spectral bandwidth and acceptance angles. Applied Optics, 1976, 15(3): 696-699

    Bo LIU, Ruobing ZHANG, Huagang LIU, Jing MA, Chen ZHU, Qingyue WANG. Investigation of spectral bandwidth of BBO-I phase matching non-collinear optical parametric amplification from visible to near-infrared[J]. Frontiers of Optoelectronics, 2008, 1(1): 101
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