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Generation and controlling of the dispersive wave by femtosecond pulses propagating in the normal dispersion regimes of the birefringent photonic crystal fiber 被引量:2

Generation and controlling of the dispersive wave by femtosecond pulses propagating in the normal dispersion regimes of the birefringent photonic crystal fiber
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摘要 This paper studies the generation of the dispersive wave (DW) in the normal dispersion regimes of the birefringent photonic crystal fiber (BPCF) fabricated in this work. The remarkable blue-shifted radiation is found to be generated when 30 fs pulses are input in the normal dispersion regime of the BPCF for the first time. The characteristics of the blue-shifted DW strongly depend on the polarization of the input pulse. As a result, two peaks appear in the blue-shifted region of the spectrum when the input pulses polarize along the slow axis of the BPCF. With the increase of the center wavelength of the initial input pulse, the difference between the wavelengths of the two peaks widens. The peak location in the spectrum can be explained by the phase matching condition between the DW and the input pulse. In addition, when the input polarization is set to an angle of 45° with respect to the principal axes of the BPCF, the cross-phase modulation and coherent coupling between two orthogonally polarized modes would result in pulse trapping in the BPCF. Accordingly, the DW shift toward short wavelength is restrained. The DW generation in the normal-dispersion regimes of BPCF can be controlled by the phase matching condition and polarization of the input pulse. This paper studies the generation of the dispersive wave (DW) in the normal dispersion regimes of the birefringent photonic crystal fiber (BPCF) fabricated in this work. The remarkable blue-shifted radiation is found to be generated when 30 fs pulses are input in the normal dispersion regime of the BPCF for the first time. The characteristics of the blue-shifted DW strongly depend on the polarization of the input pulse. As a result, two peaks appear in the blue-shifted region of the spectrum when the input pulses polarize along the slow axis of the BPCF. With the increase of the center wavelength of the initial input pulse, the difference between the wavelengths of the two peaks widens. The peak location in the spectrum can be explained by the phase matching condition between the DW and the input pulse. In addition, when the input polarization is set to an angle of 45° with respect to the principal axes of the BPCF, the cross-phase modulation and coherent coupling between two orthogonally polarized modes would result in pulse trapping in the BPCF. Accordingly, the DW shift toward short wavelength is restrained. The DW generation in the normal-dispersion regimes of BPCF can be controlled by the phase matching condition and polarization of the input pulse.
出处 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2010年第4期643-648,共6页 中国科学:物理学、力学、天文学(英文版)
基金 supported in part by the National Natural Science Founda-tion of China (Grant No. 10874145) Specialized Research Fund for the Doctoral Program of Higher Education (Grant No. 20091333110010) the Nature Science Foundation of Hebei Province (Grant No. F2009000481) the China Postdoctoral Science Foundation (Grant Nos. 20080440014 and 200902046)
关键词 birefringent photonic crystal fiber NORMAL DISPERSION DISPERSIVE wave pulse TRAPPING birefringent photonic crystal fiber normal dispersion dispersive wave pulse trapping
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  • 1宁提纲,谭中伟,李唐军,傅永军,刘艳,裴丽,简水生.Gaussian pulse transmission over ultra-high PMD fiber[J].Science China(Technological Sciences),2003,46(2):120-124. 被引量:1
  • 2杨祥林,赵阳.非线性单模光纤中的啁啾高斯准孤子传输[J].电子学报,1989,17(5):80-84. 被引量:2
  • 3Knight J C, Birks T A, Russell P St J and Atkin D M 1996 Opt. Lett. 21 1547
  • 4Ebendorff-Heidepriem H, Petropoulos P, Asimakis S, Finazzi V, Moore R C, Frampton K, Koizumi F, Richardson D J and Monro T M 2004 Opt. Express 12 5082
  • 5Folkenberg J R, Mortensen N A, Hansen K P, Hansen T P, Simonsen H R and Jakobsen C 2003 Opt. Lett. 28 1882
  • 6Kuhlmey B, Renversez G and Maystre D 2003 Appl. Opt. 42 634
  • 7Knight J C, Arriaga J, Birks T A, Ortigosa-Blanch A, Wadsworth W J and Russell P St J 2000 IEEE Photon. Technol. Lett 12 807
  • 8Podlipensky A, Szarniak P, Joly N Y, Poulton C G and Russell P St J 2007 Opt. Express 15 1653
  • 9Husakou A V and Herrmann J 2002 J. Opt. Soc. Am. B 19 2171
  • 10Asimakis S, Petropoulos P, Poletti F, Leong J Y Y, Moore R C, Frampton K E, Feng X, Loh W H and Richardson D J 2007 Opt. Express 15 596

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  • 1FENG Shuai,AO Ling,WANG YiQuan.Engineering the near-field imaging of a rectangular-lattice photonic-crystal slab in the second band[J].Science China(Physics,Mechanics & Astronomy),2009,52(1):87-91. 被引量:2
  • 2贾亚青,闫培光,吕可诚,张铁群,朱晓农.高非线性光子晶体光纤中飞秒脉冲的传输特性和超连续谱产生机制的实验研究及模拟分析[J].物理学报,2006,55(4):1809-1814. 被引量:23
  • 3M. Hu,C.-y. Wang,Y. Li,Z. Wang,L. Chai,Y.N. Kondrat’ev,C. Sibilia,A.M. Zheltikov.An anti-Stokes-shifted doublet of guided modes in a photonic-crystal fiber selectively generated and controlled with orthogonal polarizations of the pump field[J].Applied Physics B.2004(7)
  • 4Heidt A M.Pulse preserving flat-top supercontinuum generation in all-normal dispersion photonic crystal fibers[].Journal of the Optical Society of America B Optical Physics.2010
  • 5Choi H G,Kee C S,Sung J H,et al.Supercontinuum generation in irregularly microstructured elliptic core fibers[].Physical Review A Atomic Molecular and Optical Physics.2008
  • 6Hu M L,W C Y,Li Y F,et al.Polarization-and mode-dependent anti-stokes emission in a birefringent microstructure fiber[].Photonics Technol LettIEEE.2005
  • 7Hu M L.Study on Propagation of Femtosecond Laser Pulses in Photonic Crystal Fibers[]..2004
  • 8Genty G,Lehtonen M,Ludvigsen H.Effect of cross-phase modulation on supercontinuum generated in microstructured fibers with sub-30 fs pulses[].Optics Express.2004
  • 9Cristiani I,Tediosi R,Tartara L,et al.Dispersive wave generation by solitons in microstructured optical fibers[].Optics Express.2004
  • 10W. J. Wadsworth,N. Joly,J. C. Knight,et al.Supercontinuum and four-wave mixing with Q-switched pulses in endlessly single-mode photonic crystal fibres[].Optics Express.2004

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