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光子晶体光纤布拉格光栅传输谱特性的分析 被引量:17

Analysis of the Transmission Spectral Characteristics of Fiber Bragg Grating in Photonic Crystal Fibers
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摘要 研究光子晶体光纤中光纤光栅的传输谱特性对于研制基于光子晶体光纤的光纤光栅器件有着重要的意义。结合耦合模理论和光束传输相关函数方法,对一种典型光子晶体光纤中的布拉格光栅(FBG)传输谱进行了理论分析。比较了光子晶体光纤中布拉格光栅与常规布拉格光栅的传输谱。数值分析了光纤截面结构变化对于光栅传输谱的影响,并给出这种影响的定性解释。计算结果显示,与常规光纤光栅相比,包层模共振引起的损耗峰与正反向纤芯模耦合引起的损耗峰可以相比拟,而包层模共振的间隔也比常规光纤中光纤光栅的包层模共振间隔要大。同时给出了晶体光纤截面上空气孔的占空比,空气孔的排布层数对于传输谱影响的规律。 It is essential for the development of photonic crystal fiber based fiber grating devices to study the transmission spectral characteristics of the fiber grating in photonic crystal fiber. Based on the coupled mode theory and beam propagation correlation function mode-solver, the transmission spectrum of a typical fiber Bragg grating in photonic crystal fiber is studied. The transmission spectra of fiber Bragg grating in photonic crystal fiber and conventional fiber are compared. The influence of the structure change of the fiber cross section on the transmission spectrum is simulated, and derived qualitatively. It is found that the loss peaks caused by cladding mode resonances have similar strengths with those caused by the bidirectional core mode coupling, and the spacing of cladding mode resonances is larger than that in a conventional fiber. Meanwhile, the rule of effects of duty ratio of the air holes and the layer number of the air holes on the transmission spectrum is given.
出处 《光学学报》 EI CAS CSCD 北大核心 2006年第7期1007-1012,共6页 Acta Optica Sinica
关键词 光纤光学 光纤光栅 光束传输方法 耦合模理论 光子晶体光纤 fiber optics fiber grating beam propagation method coupled mode theory photonic crystal fiber
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参考文献18

  • 1T. M. Monro, D. J. Richardson. Holey optical fibres: fundamental properties and device applications [J]. Physique,2003, 4(1): 175-186
  • 2B. J. Eggleton, C. Kerbage, P. S. Westbrook. Microstructured optical fiber devices[J].Opt. Exp. , 2001, 9(13): 698-713
  • 3涂勤昌,张伟刚,金龙,开桂云,袁树忠,董孝义.光子晶体光纤光栅制备方法最新进展[J].激光与光电子学进展,2005,42(4):42-47. 被引量:9
  • 4Anders Bjaklev, Jes Broeng, Araceli Sanchez Bjarklev. Photonic Crystal Fibres [M]. Kluwer Academic Publishers, 2003. 53-113
  • 5Jingyuan Wang, Mingyi Gao, Chun Jiang et al.. Design and parametric amplification analysis of dispersion-flat photonic crystal fibers[J]. Chin. Opt. Lett. , 2005, 3(7): 380-382
  • 6Kwang N. Park, Kyung S. Lee. Improved effective-index method for analysis of photonic crystal fibers[J]. Opt. Lett.,2005, 30(9): 958-960
  • 7Ning Guan, Shinji Habu, Katsuhiro Takenaga et al.. Boundary element method for analysis of holey optical fibers [J]. J.Lightwave Technol. , 2003, 21(8): 1787-1792
  • 8Zhaoming Zhu, Thomas G. Brown. Full-vectorial finitedifference analysis of microstructured optical fibers [J]. Opt. Exp. , 2002, 10(17): 853-864
  • 9Chin-ping Yu, Hung-chun Chang. Yee-mesh-based finite difference eigenmode solver with PML absorbing boundary conditions for optical waveguides and photonic crystal fibers[J].Opt. Exp.,2004, 12(25): 6165-6177
  • 10王智,任国斌,娄淑琴,简水生.用于光子晶体光纤研究的超格子构造法[J].中国激光,2005,32(1):59-63. 被引量:7

二级参考文献41

  • 1Shangping Guo, Sacharia Albin. Simple plane wave implementation for photonic crystal calculations[J]. Opt Express, 2003. 11:167-175.
  • 2T A Birks, D Mogilevtsev, J C Knight et al. The analogy between photonic crystal fibres and step index fibres[C]. OFC98. 1998. FG4, 114-116.
  • 3T A Birks, J C Knight, P St J Russell. Endlessly single-mode photonic crystal fiber [J]. Opt Lett, 1997, 22(13) :961-963.
  • 4T A Birk, D Mogilevtsev, J C Knight et al.Single material fibers for dispersion compensation [C].0FC99, 1999,FG2-1 -FG2-3.
  • 5Bjarklev J Broeng, K Dridi S E Barkou. Dispersion properties of photonic crystal fibres [C]. ECOC98 (Madrid,Spain), 135-136.
  • 6T M Monro, D J Richardson, N G R Broderick et al.Modeling large air fraction holey optical fibers[J]. J Lightwave Technol, 2000. 18(1) :50-56.
  • 7T M Monro, D J Richardson, N G R Broderick et al. Holey optical fibers: an efficient modal model [J]. J Lightwave Technol , 1999. 17(6):1093-1102.
  • 8T M Monro, D J Richardson, N G R Broderick. Efficient modeling of holey fibers [C].OFC99, 1999, FG3, 111-113.
  • 9D Mogilevtsev, T A Birks, P St J Russell. Localized function method for modeling defect modes in 2-D photonic crystals [J]. J Lightwave Technol , 1999, 17(11):2078-2081.
  • 10W Zhi, R G Bin, L S Qin et al. Supercell lattice method for photonic crystal fibers [J]. Opt Express, 2003, 11:980-991.

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