On the Generalized Mittag-Leffler Function and its Application in a Fractional Telegraph Equation

Author:

Camargo Rubens Figueiredo,de Oliveira Edmundo Capelas,Vaz Jayme

Publisher

Springer Science and Business Media LLC

Subject

Geometry and Topology,Mathematical Physics

Reference31 articles.

1. Langlands, T.A.M., Henry, B.I., Wearne, S.L.: Fractional cable equation models for anomalous electrodiffusion in nerve cells: infinite domain solutions. J. Math. Biol. 59, 761–808 (2008)

2. Langlands, T.A.M.: Solution of a modified fractional diffusion equation. Physica A 367, 136–144 (2006)

3. Zhang, H., Liu, F.: The fundamental solutions of the space, space-time Riesz fractional partial differential equations with periodic conditions. Numer. Math. J. Chinese Univ. (English Ser.) 16, 181–192 (2007)

4. Duan, J.-s., Xu, M.-y.: The problem for fractional diffusion-wave equations on finite interval and laplace transform (in Chinese). Appl. Math. J. Chin. Univ. Ser. A 19, 165–171 (2004)

5. Yu, R., Zhang, H.: New function of Mittag-Leffler type and its application in the fractional diffusion-wave equation. Chaos, Solitons Fractals 30, 946–955 (2006)

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