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Numerical solutions to integral equations equivalent to differential equations with fractional time Cover

Numerical solutions to integral equations equivalent to differential equations with fractional time

Open Access
|Jul 2010

References

  1. Barrett, R., Berry, M., Chan, T. F., Demmel, J., Donato, J., Dongarra, J., Eijkhout, V., Pozo, R., Romine, C. and der Vorst, H. V. (1994)., SIAM, Philadelphia, PA.
  2. Bazhlekova, E. (2001)., Ph.D. dissertation, Eindhoven University of Technology, Eindhoven.
  3. Ciesielski, M. and Leszczyński, J. (2006). Numerical treatment of an initial-boundary value problem for fractional partial differential equations,(10): 2619-2631.
  4. Fujita, Y. (1990). Integrodifferential equation which interpolates the heat equation and the wave equation,(2): 309-321.
  5. Gambin, Y., Massiera, G., Ramos, L., Ligoure, C. and Urbach, W. (2005). Bounded step superdiffusion in an oriented hexagonal phase,(11): 110602.
  6. Goychuk, I., Heinsalu, E., Patriarca, M., Schmid, G. and Hänggi, P. (2006). Current and universal scaling in anomalous transport,(2): 020101 ‘(R)’.
  7. Guermah, S., Djennoune, S. and Betteyeb, M. (2008). Controllability and observability of linear discrete-time fractional-order systems,(2): 213-222, DOI: 10.2478/v10006-008-0019-6.
  8. Heinsalu, E., Patriarca, M., Goychuk, I. and Hänggi, P. (2009). Fractional Fokker-Planck subdiffusion in alternating fields,(4): 041137.
  9. Heinsalu, E., Patriarca, M., Goychuk, I., Schmid, G. and Hänggi, P. (2006). Fokker-Planck dynamics: Numerical algorithm and simulations,(4): 046133.
  10. Kaczorek, T. (2008). Fractional positive continuous-time linear systems and their reachability,(2): 223-228, DOI: 10.2478/v10006-008-0020-0.
  11. Kou, S. and Sunney Xie, X. (2004). Generalized Langevin equation with fractional Gaussian noise: Subdiffusion within a single protein molecule,(18): 180603.
  12. Labeyrie, G., Vaujour, E., Müller, C., Delande, D., Miniatura, C., Wilkowski, D. and Kaiser, R. (2003). Slow diffusion of light in a cold atomic cloud,(22): 223904.
  13. Meltzer, R. and Klafter, J. (2000). The random walk's guide to anomalous diffusion: A fractional dynamics approach,(1): 1-77.
  14. Ratynskaia, S., Rypdal, K., Knapek, C., Kharpak, S., Milovanov, A., Ivlev, A., Rasmussen, J. and Morfill, G. (2006). Superdiffusion and viscoelastic vortex flows in a two-dimensional complex plasma,(10): 105010.
  15. Rozmej, P. and Karczewska, A. (2005). Numerical solutions to integrodifferential equations which interpolate heat and wave equations,(1): 15-27.
  16. Saad, Y. and Schultz, M. (1986). GMRES: A generalized minimal residual algorithm for solving nonsymmetric linear systems,(3): 856-869.
  17. Schneider, W. and Wyss, W. (1989). Fractional diffusion and wave equations,(4): 134-144.
  18. Van der Vorst, H. (1992). Bi-CGSTAB: A fast and smoothly converging variant of Bi-CG for the solution of non-symmetric linear systems,(2): 631-644.
DOI: https://doi.org/10.2478/v10006-010-0019-1 | Journal eISSN: 2083-8492 | Journal ISSN: 1641-876X
Language: English
Page range: 261 - 269
Published on: Jul 2, 2010
Published by: University of Zielona Góra
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2010 Bartosz Bandrowski, Anna Karczewska, Piotr Rozmej, published by University of Zielona Góra
This work is licensed under the Creative Commons License.