A note on Lyapunov-type inequalities for fractional boundary value problems with Sturm-Liouville boundary conditions

IF 0.4 Q4 MATHEMATICS Journal of Mathematical Extension Pub Date : 2021-01-02 DOI:10.30495/JME.V0I0.1634
Anil Chavada, Nimisha Pathak
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Abstract

In this note, we consider fractional Strum-Liouville boundary value problem containing Caputo derivative of order $\alpha$, $ 1<\alpha\leq 2$ with mixed boundary conditions. We establish Cauchy-Schwarz-type inequality to determine a lower bound for the smallest eigenvalues. We give comparison between the smallest eigenvalues and its lower bounds obtained from the Lyapunov-type and Cauchy-Schwarz-type inequalities. Result shows that the Lyapunov-type inequality gives the worse and Cauchy-Schwarz-type inequality gives better lower bound estimates for the smallest eigenvalues. We then use these inequalities to obtain an interval where a linear combination of certain Mittag-Leffler functions have no real zeros.
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Sturm-Liouville边界条件下分数边值问题的Lyapunov型不等式的一个注记
在本文中,我们考虑了含有阶为$\alpha$,$1<\alpha\leq2$的Caputo导数的分数阶Strum-Liouville边值问题。我们建立了Cauchy-Schwarz型不等式来确定最小特征值的下界。比较了李雅普诺夫型和柯西-施瓦兹型不等式的最小特征值及其下界。结果表明,李雅普诺夫型不等式给出的结果更差,而柯西-施瓦兹型不等式给出了最小特征值的较好下界估计。然后,我们使用这些不等式来获得一个区间,其中某些Mittag-Leffler函数的线性组合没有实零。
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0.00%
发文量
68
审稿时长
24 weeks
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