Chinese Journal of Lasers, Volume. 37, Issue 10, 2559(2010)
Mode Transmission Characteristics in Hollow-Core Bragg Fibers with Slowly Variation in Outer Diameter
[1] [1] R. F. Cregan, B. J. Mangan, J. C. Knight et al.. Single-mode photonic band gap guidance of light in air[J]. Science, 1999, 285(5433): 1537~1539
[2] [2] B. Temelkuran, S. D. Hart, G. Benoit et al.. Wavelength-scalable hollow optical fibres with large photonic bandgaps for CO2 laser transmission[J]. Nature, 2002, 420(6916): 650~653
[3] [3] Y. L. Hoo, S. Liu, H. L. Ho et al.. Fast response microstructured optical fiber methane sensor with multiple side-openings[J]. IEEE Photon. Technol. Lett., 2010, 22(5): 296~298
[4] [4] C. Charlton, B. Temelkuran, G. Dellemann et al.. Midinfrared sensors meet nanotechnology: trace gas sensing with quantum cascade lasers inside photonic band-gap hollow waveguides[J]. Appl. Phys. Lett., 2005, 86(19): 194192
[8] [8] P. Yeh, A. Yariv, E. Marom. Theory of Bragg fiber[J]. J. Opt. Soc. Am., 1978, 68(9): 1196~1201
[9] [9] Y. Fink, J. N. Winn, S. Fan et al.. A dielectric omnidirectional reflector[J]. Science, 1998, 282(5394): 1679~1682
[10] [10] M. Ibanescu, S. G. Johnson, M. Soljacic et al.. Analysis of mode structure in hollow dielectric waveguide fibers[J]. Phys. Rev. E, 2003, 67(4): 046608
[11] [11] OmniGuide Inc. CO2 Laser Surgery Scalpel, Flexible CO2 Laser Scalpel-OmniGuide[EB/OL]. (2000-06-11)[2010-04-03]. http://www.omni-guide.com/index.htm
[12] [12] A. F. Abouraddy, M. Bayindir, G. Benoit et al.. Towards multimaterial multifunctional fibres that see, hear, sense and communicate[J]. Nature Materials, 2007, 6(5): 336~347
[13] [13] K. Kuriki, O. Shapira, S. D. Hart et al.. Hollow multilayer photonic bandgap fibers for NIR applications[J]. Opt. Express, 2004, 12(8): 1510~1517
[14] [14] S. Guo, S. Albin, R. S. Rogowski. Comparative analysis of Bragg fibers[J]. Opt. Express, 2004, 12(1): 198~207
[15] [15] G. Y. Xu, W. Zhang, Y. D. Huang et al.. Loss characteristics of single-HE11-mode Bragg fiber[J]. J. Lightwave Technol., 2007, 25(1): 359~366
[16] [16] S. Lacroix, R. Bourbonnais, F. Gonthier et al.. Tapered monomode optical fibers: understanding large power transfer[J]. Appl. Opt., 1986, 25(23): 4421~4425
[17] [17] J. S. Levine. Rippled wall mode converters for circular waveguide[J]. International Journal of Infrared and Millimeter Waves, 1984, 5(7): 937~952
[18] [18] Photonic Bandgap Fibers & Devices group[EB/OL]. (2005-02-13)[2010-04-03]. http://mit-pbg.mit.edu/Pages/As2Se3.html
[19] [19] Photonic Bandgap Fibers & Devices group[EB/OL]. (2005-02-13)[2010-04-03]. http://mit-pbg.mit.edu/Pages/PEI.html
Get Citation
Copy Citation Text
Shi Lichao, Zhang Wei, Xing Wenxin, Li Zhiguang, Wang Wentao, Huang Yidong, Peng Jiangde. Mode Transmission Characteristics in Hollow-Core Bragg Fibers with Slowly Variation in Outer Diameter[J]. Chinese Journal of Lasers, 2010, 37(10): 2559
Category:
Received: Feb. 5, 2010
Accepted: --
Published Online: Sep. 25, 2010
The Author Email: Lichao Shi (slc07@mails.tsinghua.edu.cn)