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Asymptotic integration of a linear fourth order differential equation of Poincaré type

机译:庞加莱型线性四阶微分方程的渐近积分

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This article deals with the asymptotic behavior of nonoscillatory solutions of fourth order linear differential equation where the coefficients are perturbations of constants. We define a change of variable and deduce that the new variable satisfies a third order nonlinear differential equation. We assume three hypotheses. The first hypothesis is related to the constant coefficients and set up that the characteristic polynomial associated with the fourth order linear equation has simple and real roots. The other two hypotheses are related to the behavior of the perturbation functions and establish asymptotic integral smallness conditions of the perturbations. Under these general hypotheses, we obtain four main results. The first two results are related to the application of a fixed point argument to prove that the nonlinear third order equation has a unique solution. The next result concerns with the asymptotic behavior of the solutions of the nonlinear third order equation. The fourth main theorem is introduced to establish the existence of a fundamental system of solutions and to precise the formulas for the asymptotic behavior of the linear fourth order differential equation. In addition, we present an example to show that the results introduced in this paper can be applied in situations where the assumptions of some classical theorems are not satisfied.
机译:本文讨论四阶线性微分方程非振动解的渐近性质,其中系数是常数的摄动。我们定义变量的变化并推论新变量满足三阶非线性微分方程。我们假设三个假设。第一个假设与常数系数有关,并建立与四阶线性方程相关的特征多项式具有简单和实数根。另外两个假设与摄动函数的行为有关,并建立了摄动的渐近积分小性条件。在这些一般假设下,我们获得了四个主要结果。前两个结果与定点参数的应用有关,以证明非线性三阶方程具有唯一解。下一个结果与非线性三阶方程解的渐近行为有关。引入第四主定理来建立基本解的存在性,并精确解线性四阶微分方程的渐近行为的公式。另外,我们通过一个例子说明,本文介绍的结果可用于不满足某些经典定理假设的情况。

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