Positive Solutions for First-Order Nonlinear Caputo-Hadamard Fractional Relaxation Differential Equations
Kragujevac Journal of Mathematics, Tome 45 (2021) no. 6, p. 897 .

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This article concerns the existence and uniqueness of positive solutions of the first-order nonlinear Caputo-Hadamard fractional relaxation differential equation\begin{equation*} eft\{\begin{array}{l} \mathfrak{D}_{1}^{lpha }eft( xeft( t\right) -geft( t,xeft( t\right) \right) \right) +wxeft( t\right) =feft( t,xeft( t\right) \right) ,ext{ }1, xeft( 1\right) =x_{0}>geft( 1,x_{0}\right) >0,\end{array}\right. \end{equation*}where $0\alpha \leq 1$. In the process we convert the given fractional differential equation into an equivalent integral equation. Then we construct appropriate mappings and employ the Krasnoselskii fixed point theorem and the method of upper and lower solutions to show the existence of a positive solution of this equation. We also use the Banach fixed point theorem to show the existence of a unique positive solution. Finally, an example is given to illustrate our results.
Classification : 34A08, 34A12
Keywords: fixed points, fractional differential equations, positive solutions, existence, uniqueness, relaxation phenomenon
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     author = {Abdelouaheb Ardjouni and Ahcene Djoudi},
     title = {Positive {Solutions} for {First-Order} {Nonlinear} {Caputo-Hadamard} {Fractional} {Relaxation} {Differential} {Equations}},
     journal = {Kragujevac Journal of Mathematics},
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     year = {2021},
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Abdelouaheb Ardjouni; Ahcene Djoudi. Positive Solutions for First-Order Nonlinear Caputo-Hadamard Fractional Relaxation Differential Equations. Kragujevac Journal of Mathematics, Tome 45 (2021) no. 6, p. 897 . http://geodesic.mathdoc.fr/item/KJM_2021_45_6_a4/