Acta Optica Sinica, Volume. 24, Issue 12, 1612(2004)
Investigation of the Supercell Model for the Bragg Fibers
[1] [1] Yeh P, Yariv A, Marom E. Theory of Bragg fibers. J. Opt. Soc. Am., 1978, 68(9):1196~1201
[2] [2] Fink Y, Winn J N, Fan S H et al.. A dielectric omnidirectional reflector. Science,1998,282(11):1679~1682
[3] [3] Fink Y, Ripin D J, Fan S et al.. Guiding optical light in air using an all-dielcetric structure. J. Lightwave Technol., 1999, 17(11): 2039~2041
[4] [4] Russell P. Photonic crystal fibers. Science, 2003, 299(1): 358~362
[5] [5] Knight J C, Russell P S. New ways to guide light. Science, 2002, 296(4): 276~277
[6] [6] Broeng J, Libori S E B, Sondergaard T et al.. Analysis of air-guiding photonic bandgap fibers. Opt. Lett., 2000, 25(2): 96~98
[7] [7] Ibanescu M, Fink Y, Fan S et al.. An all-dielectric coaxial waveguide. Science, 2000, 289(5478): 415~419
[8] [8] Hart S D, Maskaly G R, Temelkuran B et al.. External reflection from omnidirectional dielectric mirror fibers. Science, 2002, 296(4): 510~513
[9] [9] Ibanescu M, Johnson S G, Soljacic M et al.. Analysis of mode structure in hollow dielectric waveguide fibers. Phys. Rev. (E), 2003, 67(4): 046608-1~046608-8
[10] [10] Bassett I M, Argyros A. Elimination of polarization degeneracy in round waveguides. Opt. Express, 2002, 10(23): 1342~1346
[11] [11] Johnson S G, Ibanescu M, Skorobogatiy M et al.. Low-loss asymptotically single-mode propagation in large-core omniguide fibers. Opt. Express, 2001, 9(13): 748~779
[12] [12] Ourang G, Xu Yong, Yariv A. Theoretical study on dispersion compensation in air-core Bragg fibers. Opt. Express, 2002, 10(17): 899~908
[13] [13] Engeness T D, Ibanescu M, Johnson S G et al.. Dispersion tailoring and compensation by modal interactions in omniguide fibers. Opt. Express, 2003, 11(10): 1175~1196
[14] [14] Mosoriu J A, Silvestre E, Ferrando A et al.. High-index-core Bragg fibers: dispersion properties. Opt. Express, 2003, 11(12): 1400~1405
[15] [15] Guo Shangping, Albin Sacharia. Simple plane wave implementation for photonic crystal calculations. Opt. Express, 2003, 11(2): 167~175
[16] [16] Joannopoulos J D, Meade R D, Winn J N. Photonic Crystals: Molding the Flow of Light. New York: Princeton University Press, 1995
[17] [17] Sakoda K. Optical Properties of Photonic Crystals. Heidelberg: Springer, 2001
[18] [18] Snyder A W. Optical Waveguide Theory. New York: Chapman and Hall, 1983
[19] [19] Bin R G, Zhi W, Qin L S et al.. Mode classification and degeneracy in photonic crystal fiber. Opt. Express, 2003, 11(11): 1310~1321
[20] [20] Zhi W, Bin R G, Qin L S et al.. Supercell lattice method for photonic crystal fibers. Opt. Express, 2003, 11(9): 980~991
[21] [21] McIsaac P R. Symmetry-induced modal characteristics of uniform waveguides-I : summary of results, and Ⅱ: Theory. IEEE Trans. Microwave Theory and Techniques, 1975, MIT-23(5): 421~433
[22] [22] Steel M J, White T P, Sterke C M et al.. Symmetry and degeneracy in microstructured optical fibers. Opt. Lett., 2001, 26(8): 488~490
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[in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Investigation of the Supercell Model for the Bragg Fibers[J]. Acta Optica Sinica, 2004, 24(12): 1612