Indirect stabilization of locally coupled wave-type systems (Q2911447)
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scientific article; zbMATH DE number 6074763
| Language | Label | Description | Also known as |
|---|---|---|---|
| English | Indirect stabilization of locally coupled wave-type systems |
scientific article; zbMATH DE number 6074763 |
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Indirect stabilization of locally coupled wave-type systems (English)
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31 August 2012
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indirect damping
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localized zero order term
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boundary damped wave or plate systems
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polynomial stability
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The authors study in an abstract setting the indirect stabilization of systems of two wave-like equations coupled by a localized zero order term. Only one of the two equations is directly damped. The main novelty in this paper is that the coupling operator is not assumed to be coercive in the underlying space. They show that the energy of smooth solutions of these systems decays polynomially at infinity, whereas it is known that exponential stability does not hold, see [the author et al., J. Evol. Equ. 2, No. 2, 127--150 (2002; Zbl 1011.35018)]. They give applications of their result to locally or boundary damped wave or plate systems. In any space dimension, they prove polynomial stability under geometric conditions on both the coupling and the damping regions. In one space dimension, the result holds for arbitrary non-empty open damping and coupling regions, and in particular when these two regions have an empty intersection. Hence, indirect polynomial stability holds even though the feedback is active in a region in which the coupling vanishes and vice versa.
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