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长周期光纤光栅逐点写入的高斯型折射率谐波分析

Analysis on Harmonics of Long Period Fiber Grating Written by UV Gaussian Beam
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摘要 由于写入方式的限制,长周期光纤光栅(LPG)的实际折射率分布与经典理论有明显的差异,由此造成写入光栅的特性与经典理论的导出结果不能完全吻合。用傅里叶级数展开的方法对LPG逐点写入造成的高斯型折射率分布进行谐波分析,据此总结了高斯型折射率分布下光束形状与光栅周期的关系对谐波分布的影响,讨论了逐点写入的最佳参数选择,得出了对光栅写入和特性估计有关的结论,并给出了高斯光束逐点写入和振幅掩模板写入长周期光栅的透射谱比较。 Limited by the writing mode, the real refractive index distribution of the long period fiber grating (LPG) is different from that of the classic theory, which makes the spectrum of the real grating disagrees with ideal value. Fourier series is used to analyze the harmonics of Gaussian refractive index. Effect on the harmonics distribution caused by the relation between the beam size and grating constant is summarized, and the principle of optimum parameter selection is discussed. And some conclusions about LPG fabrication and character estimation are gotten. The transmission spectrum comparison between the long cyde grating written point by point with Gaussian beams and transmission by amplitude mask is obtained.
出处 《中国激光》 EI CAS CSCD 北大核心 2009年第3期683-687,共5页 Chinese Journal of Lasers
基金 国家自然科学基金(60477017) 北京交通大学人才基金(2007RC075)资助项目
关键词 长周期光纤光栅 谐波分析 傅里叶级数 逐点写入 高斯光束 高斯型折射率分布 Electric currents Fiber Bragg gratings Fiber lasers Fibers Fourier analysis Fourier series Gaussian distribution Gaussian noise (electronic) Harmonic analysis Light refraction Plasma diagnostics Refractive index Refractometers Resonance Trellis codes
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参考文献10

  • 1[4]Mini Das,K.Thyagarajan.Dispersion compensation in transmission using uniform long period fiber gratings[J].Opt.Commun.,2001,190:159~163 被引量:1
  • 2[6]Seungin Back.Sookyoung Roh,Yoonchan Jeong et al..Experimental demonstration of enhancing pump absorption rate in cladding-pumped ytterbium-doped fiber lasers using pump-coupling long-period fiber gratings[J].IEEE Photon.Technol.Left.,2006.18(5):700~702 被引量:1
  • 3[7]R.Falate,R.C.Kamikawachi,M.M"uller et al..Fiber optic sensors for hydrocarbon detection[J].Sensors and Actuators.B,2005,105:430~436 被引量:1
  • 4[8]Miroslav Chomat,Daniela Berkova,Filip Todorov et al..Bend sensing with long-period fiber gratings in capillaries embedded in structures[J].Sensors and Actuators.C,2008,28:716~721 被引量:1
  • 5[9]A.M.Vengsarkar.P.J.Lemaire,L.B.Judkins et al..Long-period fiber gratings as band-rejection filters[J].J.Lightwave Technol.,1996,14(1):58~65 被引量:1
  • 6[10]Turan Erdogan.Fiber grating spectra[J].J.Lightwave Technol.,1997,15(8):1277~1294 被引量:1
  • 7[11]D.B.Stegall,T.Erdogan.Dispersion control with use of long-period fiber gratings[J].J.Opt.Soc.Am.A,2000,17(2):304~312 被引量:1
  • 8[12]Turan Erdogan.Cladding-mode resonances in short-and long-period fiber grating filters[J].J.Opt.Soc.Am.A,1997,14(8):1760~1773 被引量:1
  • 9[13]Turan Erdogan.Cladding-mode resonances in short-and long-period fiber grating filters:errata[J].J.Opt.Soc.Am.A,2000,17(11):2113~2113 被引量:1
  • 10[16]M.Douay,W.X.Xie,T.Taunay et al..Densification involved in the UV-based photosensitivity of silica glasses and optical fibers[J].J.Lightwave Technol.,1997.15(8):1329~1342 被引量:1

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