• Acta Optica Sinica
  • Vol. 20, Issue 2, 204 (2000)
[in Chinese] and [in Chinese]
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  • [in Chinese]
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    [in Chinese], [in Chinese]. Elliptical Fourier Series Expansion Method and Cutoff Frequencies of Elliptical Optical Waveguides[J]. Acta Optica Sinica, 2000, 20(2): 204 Copy Citation Text show less
    References

    [1] Yeh C. Elliptical dieletctric waveguide. J. Appl. Phys., 1962, 32():3235~3243

    [2] Eyges L, Gianino P, Wintersteiner P. Modes of dielectric waveguides of arbitrary cross sectioncal shape. J. Opt. Soc. Am., 1979, 69(9):1226~1235

    [3] Cozens J R, Dyott R B. Higher-mode cutoff in elliptical dielectric waveguides. Electron. Lett., 1979, 15(18):558~559

    [4] Rengarajan S R, Lewis J E. First higher-mode cutoff in two-layer elliptical fibre waveguides. Electron. Lett., 1980, 16(7):263~264

    [5] Saad S M. On the higher order modes of elliptical optical fibers. IEEE Trans. on Microw. Theory & Technol., 1985, MTT-33(11):1110~1112

    [6] Rengarajan S R. On higher order mode cutoff frequencies in elliptical step index fiber. IEEE Trans. On Microw. Theory & Technol., 1989, MTT-37(8):1244~1248

    [7] Chiang K S. Finite element method for cutoff frquencies of weakly guiding fiber of arbitrary cross section. Opt. & Quant. Electron., 1984, 16(6):487~493

    [8] Kolesnichenko Y V, Shevcheno V V. Fiber-optic dielectric waveguides with a noncircular core. Sov. J. Commun. Technol. & Electron., 1988, 33(11):127~136

    [9] Decotignie J D. Contribution a l′etude theorique dans les guides optiques. Thesis 463, Ecole Polytechnique, Lausanne, 1982

    [10] Dyott R B. Cutoff of the first higher modes in elliptical dielectric waveguides: An experimental approach. Electron. Lett., 1990, 26(20):1721~1723

    [11] Dyott R B. Elliptical Fiber Waveguides, Norwood, MA: Artcch House, 1995.

    [12] Shaw J K, Henry W M, Winfrey W R. Weakly guiding analysis of elliptical core step index waveguides based on the characteristic number of Mathieu′s equation. J. Lightwave Technol., 1995, 13(12):2359~2371

    [13] Su C C. Cutoff frquency of a homogeneous optical fiber with arbitrary cross section. IEEE Trans. on Microw. Theory & Technol., 1985, MTT-33(11):1101~1105

    [14] Kummar A, Vershney R K. Propagation characteristics of highly elliptical core optical waveguides. a perturbation approach. Opt. & Quant. Electron., 1984, 16(4):349~354

    [15] Chiang K S. Review of numerical and approximate methods for the model analysis of general optical waveguides. Opt. & Quant. Electron., 1994, 26(3):S113~134

    [16] Manenkov A B, Rozhnev. Optical delectric waveguide analysis, based on the modified finite element and integral equation methods. Opt. & Quantum Electron., 1998, 30(1):61~70

    CLP Journals

    [1] Yu Zhuzheng, Tang Xiaoli, Wang Xinran, Shi Yiwei. Transmission Characteristics of Elliptical Terahertz Hollow Fiber with Dielectric and Metallic Inner Coatings[J]. Acta Optica Sinica, 2013, 33(9): 906009

    [in Chinese], [in Chinese]. Elliptical Fourier Series Expansion Method and Cutoff Frequencies of Elliptical Optical Waveguides[J]. Acta Optica Sinica, 2000, 20(2): 204
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