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掺铒光纤放大器中孤子脉冲获得线性啁啾的研究

, PP. 728-735

Keywords: 非线性光学,线性啁啾,对称分步傅立叶法,掺铒光纤放大器,脉冲压缩

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Abstract:

为了研究孤子脉冲经掺铒光纤放大器演变后的啁啾特性,采用了对称分步傅立叶的数值方法,对孤子脉冲在不同增益条件下的演变和线性啁啾特性进行了数值仿真。数值计算的结果表明当满足增益系数μ远大于1时,基孤子脉冲在放大器中传输能够获得很好的线性啁啾,且发现脉冲的啁啾特性受选取的放大器长度参量的影响;啁啾越明显的脉冲,线性啁啾所占的区域越窄。进一步研究还发现初始啁啾系数和孤子阶数对脉冲获得的线性啁啾均有很大影响,初始正啁啾系数和高孤子阶数均能增强输出脉冲的线性啁啾特性。因此,利用孤子脉冲在掺铒光纤放大器中传输的非线性效应能够获得良好的线性啁啾,这对实现高质量的脉冲压缩是很有帮助的。

References

[1]  [J]. Acta Physica Sinica, 2007,56(04): 2286-2292(in Chinese).?
[2]  . Zhao C M, Yang X Y, Effect of initial chirp on picosecond pulse compression in fibers with slowly decreasing dispersion
[3]  [J]. Chinese Journal of Quantum Electronics, 2005 22(3):464-467 (in Chinese).
[4]  . Xia G Q, Wu Z M, Chen H T. Suppression of pulse walk-off effect during the process of pulse compression by cross-phase modulation of pulse pair
[5]  [J], Acta Physica Sinica, 2005,54(03): 1167-1171. (in Chinese).?
[6]  . Hotdel W, Schütz J and Weber H P, Limits to the amplification efficiency of ultrashort fundenmental solitons using Er-doped fibers, Opt. Commun., 1992, 88:173-179.?
[7]  . Agrawal G P, Amplification of Ultrashort Solitons in Erbium-Doped Fiber Amplifiers
[8]  [J], IEEE Photon. Technol. Lett., 1990, 2(12): 875~877.?
[9]  . Wai P K A, Cao W H. Simultaneous Amplification and Compression of Ultra-short Solitons in an Erbium-Doped Nonlinear Amplifying Fiber Loop Mirror
[10]  [J]. IEEE J. Quantum Electron., 2003, 39(4): 555~561.?
[11]  . Mark D P and Liu H F,, Higher Order Soliton Pulse Compression in Dispersion-Decreasing Optical Fibers
[12]  [J], IEEE Journal of Quantum Electron., 1997, 33(8): 1430~1439.?
[13]  . Agrawal G P. Nonlinear Fiber Optics
[14]  [M], 3rd ed. California: Academic Press, Inc., 1995: 201-218.?
[15]  Finot C, Millot G, Billet C et al. Experimental Generation of Parabolic of Pulses via Raman Amplification in Optical Fiber
[16]  [J]. Opt. exp, 2003, 11(13):1547-1552.?
[17]  Hirooka T, Nakazawa M. Parabolic Pulse Generation by Use of a Dispersion-decreasing Fiber with Normal Group-velocity Dispersion
[18]  [J]. Opt. lett. 2004, 29(5): 498-500.?
[19]  .Chen H T, Wu Z M, Xia G Q, Study on Parabolic Pulse with a Highly Linear Chirp Generation in the ND-DDF Amplifier
[20]  [J], 2007, 36 (sup):22-26?
[21]  . Agrawal G P. Nonlinear Fiber Optics
[22]  [M], 3rd ed. California: Academic Press, Inc., 1995: 408-509.
[23]  Chen H T, Wu Z M, Yang W Y, et al. Optimization of adiabatic compression in dispersion decreasing fiber using distributed Raman amplification
[24]  [J]. Chinese Journal of Quantum Electronics, 2006 23(1):103-108 (in Chinese).?
[25]  . Yang G Q; Song J E ; Huang Y Q, Numerical simulation of the all-fiber compact compressor based on cascaded uniform fiber gratings
[26]  [J]. Chinese Journal of Quantum Electronics, 2005 22(2):282-285 (in Chinese).
[27]  . Yu B T, Xu W C, Xu Y Z, et al., Pedestal-free ultra-short pulse generation using nonlinear optical loop mirror by soliton compression effect
[28]  [J]. Chinese Journal of Quantum Electronics, 2005 22(1):90-94 (in Chinese).?
[29]  . Zheng H J, Liu S L, Li X, Xu J P. Effect of initial frequency chirp on the linear propagation characteristics of the hyperbolic secant optical pulse

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