Dong Ming-de. Correspondence Function D(z) and Generalized Irregular Equations[J]. Applied Mathematics and Mechanics, 1985, 6(9): 781-790.
Citation: Dong Ming-de. Correspondence Function D(z) and Generalized Irregular Equations[J]. Applied Mathematics and Mechanics, 1985, 6(9): 781-790.

Correspondence Function D(z) and Generalized Irregular Equations

  • Received Date: 1983-09-09
  • Publish Date: 1985-09-15
  • Extending Riemann's idea of P function (using equation's parameters to represent the function defined by the equation), we introduce correspondence functions D(z) to describe regular and irregular integrals in a unifying way. By explicit solution discuss monodromy group of non-Fuchsian equations. The explicit expressions of exponent and expansion coefficients for Floquet solution are obtained. Method of correspondence functions permits us to obtain systematically the solutions of generalized irregular equations, having regular, irregular poles, essential, algebraic, transcendental, logarithmic singularities as well as singular line. The representation of basic set of solutions by Dσ(z) function makes it possible to enlarge the scope of investigation of analytic theory. The significance of Poincare's conjecture is discussed, as D functions are automorphic.
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  • [1]
    Poincaré, H., Oeuvres T1,P. 334; T2, p. 300.
    [2]
    Bieberbach, L., Theorie der Gew(ö)enliche Differentiagleichungen(1965).
    [3]
    Erdelyi, A., Higher Transcendental Functions, Ⅰ-Ⅲ(1953).
    [4]
    Dong Ming-de, Acta.Astron, Sinica, 21,1 (1980).
    [5]
    Dong Ming-de, New Analytic Theory for Equations with Variable Coefficients, Lecture Notes.(to be published).
    [6]
    Dong Ming-de, New Theory for Equations of Non-Fuchsian Type-Representation Theorem of Tree Series, Ⅰ, Ⅱ.(to be published)
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