Analysis of Fractional Swift-Hohenberg Equation Using a Novel Computational Technique
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Date
2020
Journal Title
Journal ISSN
Volume Title
Publisher
Wiley
Open Access Color
Green Open Access
No
OpenAIRE Downloads
OpenAIRE Views
Publicly Funded
No
Abstract
In this paper, the approximated analytical solution for fractional Swift-Hohenberg (S-H) equation is found with the aid of novel technique called q-homotopy analysis transform method (q-HATM). To ensure the applicability and efficiency of the proposed algorithm, we consider non-linear arbitrary-order S-H equation in presence and absence of dispersive term. The convergence analysis for the projected problem is presented, and the numerical simulations have been conducted to verify the future scheme is reliable and accurate. Further, the effect of bifurcation and dispersive parameters with physical importance on the probability density function for distinct fractional Brownian and standard motions are presented through plots. The obtained results elucidate that the proposed technique is easy to implement and very effective to analyse the complex problems that arose in science and technology.
Description
D G, Prakasha/0000-0001-6453-0308; Veeresha, Dr. P./0000-0002-4468-3048
Keywords
Fractional Differential Equations, Fractional Swift-Hohenberg Equation, Laplace Transform, Q-Homotopy Analysis Transform Method, q-homotopy analysis transform method, Fractional derivatives and integrals, projected problem, Laplace transform, Series expansions (e.g., Taylor, Lidstone series, but not Fourier series), approximated analytical solution, Fractional partial differential equations
Fields of Science
0103 physical sciences, 01 natural sciences
Citation
Veeresha, P.; Prakasha, D.G.; Baleanu, D.,"Analysis of Fractional Swift-Hohenberg Equation Using A Novel Computational Technique",Mathematical Methods in the Applied Sciences, Vol. 43, No. 4, pp. 1970-1987, (2020).
WoS Q
Q1
Scopus Q
Q1

OpenCitations Citation Count
46
Source
Mathematical Methods in the Applied Sciences
Volume
43
Issue
4
Start Page
1970
End Page
1987
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Citations
CrossRef : 35
Scopus : 39
Captures
Mendeley Readers : 7
SCOPUS™ Citations
43
checked on Feb 23, 2026
Web of Science™ Citations
36
checked on Feb 23, 2026
Page Views
1
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