期刊文献+

色散平坦光子晶体光纤中实现光波变换的研究 被引量:9

Theoretical and experimental analysis of wavelength conversion in dispersion-flatted photonic crystal fibers
原文传递
导出
摘要 基于四波混频(FWM)效应,在色散平坦光子晶体光纤(PCF)中实现了全光波长变换。采用长度为30m、具有小的反常色散值的高非线性色散平坦PCF对10Gbit/s的信号进行了波长变换,当平均泵浦功率为26dBm时,在20nm转换带宽内得到了-19.5dB的转换效率;用具有小的正常色散值的高非线性色散平坦PCF替代原光纤,进行了实验与理论比较。研究结果表明:利用两种不同的光纤得到了几乎相同的转换效率和转换带宽。 We demonstrate all-optical wavelength conversion based on four-wave mixing.We use the 30 m dispersion-flattened photonic crystal fiber with anomalous dispersion in the experiment.For an average pump power of 26 dBm,the conversion efficiency is around-19.5 dB,covering a conversion bandwidth of 20 nm.Then the dispersion-flattened photonic crystal fiber with normal dispersion is used to replace the former one.Through theoretical and experimental analysis,we get the conclusion that two different kinds of fibers above-mentioned can get almost the same conversion efficiency and conversion bandwidth.
出处 《光电子.激光》 EI CAS CSCD 北大核心 2009年第1期28-31,共4页 Journal of Optoelectronics·Laser
基金 国家重点基础研究发展计划"973"资助项目(2003CB314906) 国家高技术研究发展计划"863"资助项目(2007AA03Z447) 北京市教育委员会共建资助项目(XK100130437)
关键词 光子晶体光纤(PCF) 全光波长变换 四波混频(FWM) photonic crystal fiber(PCF) wavelength conversion four-wave mixing(FWM)
  • 相关文献

参考文献10

  • 1WEI Yan-fen XU Yong-zhao Zhang Xia HUANG Yong-qing REN Xiao-min.Investigation of all-optical regeneration based on self-phase modulation in microstructured fibers[J].Optoelectronics Letters,2007,3(1):18-21. 被引量:3
  • 2Bostjan Batagelj. Proceedings of ICTON′2000 . 2000
  • 3Yoo S J.Wavelength conversion technologies for WDM network application[].Journal of Lightwave Technology.1996
  • 4T.Tanemura,C.S.Goh,K.Kikuchiet al.Highly efficientarbitrary wavelength conversion within entire C-band based onnondegenerate fiber four-wave mixing[].IEEE Photonics Technology Letters.2004
  • 5Yu,J.0-Gb/s wavelength conversion based on cross-phase modulation in high-nonlinearity dispersion-shifted fiber and optical filtering[].IEEE Photonics Technology Letters.2001
  • 6Inoue,K.Tunable and selective wavelength conversion using fiber four-wave mixing with two pump lights[].IEEE Photonics Technology Letters.1994
  • 7Peter A Andersen,Torger Tokle,Yan Geng,Christophe Peucheret,and Palle Jeppesen.Wavelength conversion of a 40-Gb/s RZ-DPSK signal using four-wave mixing in a dispersion-flattenedHighly nonlinear photonic crystal fiber[].IEEE Photonics Technology Letters.2005
  • 8Chow K K,Shu C,Lin Chinlon,et al.Polarization-Insensitive Widely Tunable Wavelength Converter Based on Four-Wave Mixing in a Dispersion-Flattened Nonlinear Photonic Crystal Fiber[].IEEE Photonics Technology Letters.2005
  • 9Night J C,Birk T A,Russell P S J et al.All-silica single-mode optical fiber with photonic crystal cladding[].Optics Letters.1996
  • 10HANSEN K P.Dispersion flattened hybrid-core nonlinear photonic crystal fiber[].Optics Express.2003

二级参考文献2

共引文献2

同被引文献93

  • 1顾雯雯,赵建林,崔莉,侯建平.光子晶体光纤气体传感灵敏度的有限差分法分析[J].光子学报,2007,36(1):94-98. 被引量:9
  • 2于晋龙,王耀天,张爱旭,张艳冬,朱利凯,李亚男,胡浩,王文睿,王卓然,吕捷,王新兵,张立台,杨恩泽.40 Gb/s信号全光3R再生实验[J].光学学报,2007,27(5):801-806. 被引量:21
  • 3张霞,任晓敏,王子南,徐永钊,黄永清,陈雪.Four-wave mixing based 10-Gb/s tunable wavelength conversion in dispersion-flattened microstructure fibers[J].Chinese Optics Letters,2007,5(7):386-388. 被引量:3
  • 4Jiang R,Saperstein R,Alic N. et al. 375 THz parametric translation of modulated signal from 1550 nm to visible band[A]. Optical Fiber Communication Conference National Fiber Optic Engineers Conference[C]. 2006.
  • 5Jiang, Rui, Saperstein, Robert E, Alic, Nikola, et al. Continuouswave band translation between the near-infrared and visible spectral ranges[J].Journal of Lightwave Technology, 2006,25(1):58-66.
  • 6Govind P,Agrawal. Nonlinear fiber optics,Third Edition & Applications of Nonlinear Fiber Optics. 2002.
  • 7Phillips I D, Ellis A D, Widdowson T, et al. 80 Gbit/s optical clock recovery using an electrical phase Iockedloop,and commercially available components[A]. Optical Society of America, Optical Fiber Communication Conference, Technical Digest, Postconference Edition[C]. Washington, DC, USA. 2000. 229- 231.
  • 8Sartorius B, Bauer S, Bornholdt C,et al. All-optical clock recovery for signal processing and regeneration[A]. IEEE Lasers and Electro-Optics Society,Digest of the LEOS Summer Topical Meetings[C]. Mont Tremblant, QC CANADA, 2002,20(7) : 466-468.
  • 9Wang W, Yu J,Zhang A, et al. Investigation of a Rate-Selectable All-Optical Packet Clock Recovery System[J].Photonics Technology Letters, IEEE. 2008,20(7) : 466-468.
  • 10Weiming M,Andrekson P A,Toulouse J. All-optical wavelength conversion based on sinusoidal cross-phase modulation in optical fibers[J]. Photonics Technology Letters, IEEE, 2005, 17 (2) :420-422.

引证文献9

二级引证文献36

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部