[1] Caputo M. Linear models of dissipation whose Q is almost frequency independent. Part II, Geophys J R Astron, 1967, 13: 529--539
[2] El-sayed A M A. On the fractional differential equation. Appl Math Comput, 1992, 49: 205--213
[3] Delbosco D, Rodino L. Existence and uniqueness for a nonlinear fractional differential equation. J Anal Math Appl, 1996, 204: 609--625
[4] Diethelm K, Ford N J. Analysis of fractional differential equations. J Math Anal Appl, 2002, 265: 229--248
[5] Gaul L, Klein P, Kempfle S. Damping description involving fractional operators. Mech Systems Signal Process, 1991, 5: 81--88
[6] Glockle W G, Nonnenmacher T F. A fractional calculus approach to self-similar protein dynamics. Biophys J, 1995, 68: 46--53
[7] Yu C, Gao G Z. Existence of fractional differential equations. J Math Anal Appl, 2005, 310: 26--29
[8] Yu C, Gao G Z. On the soluion of nonlinear fractional differential equations. Nonlinear Anal, 2005, 63: 971--976
[9] Miller K S, Ross B. An Introduction to the Fractional Calculus and Fractional Differential Equations. New York: A Wiley-Interscience Publication, 1993
[10] Podlubny I. Fractional Differential Equations: An Introduction to Fractional Derivatives, Fractional Differential Equations, to Methods of Their Solution and Some of Their Applications. New York: Academic Press, 1999
[11] Hale J K, Lunel S M V. Introduction to Functional Differential Equations. New York: Springer-Verlag, 1993
[12] 郑祖庥. 泛函微分方程理论. 合肥: 安徽教育出版社, 1994
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