基于分数阶微积分的广义Lane-Emden型序列问题

Q3 Mathematics
Y. Gouari, Z. Dahmani, A. Ndiaye
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引用次数: 7

摘要

摘要本文将Riemann-Liouville积分算子和Caputo导数相结合,研究了Lane-Emden型非线性时间奇异微分方程。所考虑的问题涉及n个分式Caputo导数,条件是这些导数既不满足交换性也不满足半群性质。应用Banach收缩原理证明了一个存在唯一性分析结果。然后,给出了另一个关于至少一个解存在性的结果,并利用Schaefer不动点定理建立了与该结果有关的一些充分条件。最后,我们向读者介绍一些例证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A generalized sequential problem of Lane-Emden type via fractional calculus
Abstract In this paper, we combine the Riemann-Liouville integral operator and Caputo derivative to investigate a nonlinear time-singular differential equation of Lane Emden type. The considered problem involves n fractional Caputo derivatives under the conditions that neither commutativity nor semi group property is satisfied for these derivatives. We prove an existence and uniqueness analytic result by application of Banach contraction principle. Then, another result that deals with the existence of at least one solution is delivered and some sufficient conditions related to this result are established by means of the fixed point theorem of Schaefer. We end the paper by presenting to the reader some illustrative examples.
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来源期刊
Moroccan Journal of Pure and Applied Analysis
Moroccan Journal of Pure and Applied Analysis Mathematics-Numerical Analysis
CiteScore
1.60
自引率
0.00%
发文量
27
审稿时长
8 weeks
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