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Large Time Asymptotics for Partially Dissipative Hyperbolic Systems

机译:部分耗散双曲系统的大时间渐近性

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This work is concerned with (n-component) hyperbolic systems of balance laws in m space dimensions. First, we consider linear systems with constant coefficients and analyze the possible behavior of solutions as t → ∞. Using the Fourier transform, we examine the role that control theoretical tools, such as the classical Kalman rank condition, play. We build Lyapunov functionals allowing us to establish explicit decay rates depending on the frequency variable. In this way we extend the previous analysis by Shizuta and Kawashima under the so-called algebraic condition (SK). In particular, we show the existence of systems exhibiting more complex behavior than the one that the (SK) condition allows. We also discuss links between this analysis and previous literature in the context of damped wave equations, hypoellipticity and hypocoercivity. To conclude, we analyze the existence of global solutions around constant equilibria for nonlinear systems of balance laws. Our analysis of the linear case allows proving existence results in situations that the previously existing theory does not cover.
机译:这项工作涉及在m个空间维度上的(n个分量)双曲平衡法则。首先,我们考虑具有恒定系数的线性系统,并分析t =∞时解的可能行为。使用傅立叶变换,我们研究控制理论工具(例如经典的卡尔曼等级条件)发挥的作用。我们建立了Lyapunov函数,使我们能够根据频率变量建立明确的衰减率。这样,我们扩展了静田和川岛在所谓的代数条件(SK)下的先前分析。特别是,我们展示了系统表现出比(SK)条件所允许的行为更为复杂的行为。我们还讨论了在阻尼波方程,次椭圆率和矫顽力方面该分析与先前文献之间的联系。总而言之,我们分析了平衡律非线性系统在恒定平衡附近的整体解的存在。我们对线性情况的分析允许在先前现有的理论无法涵盖的情况下证明存在性结果。

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