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Titlebook: Elliptic Carleman Estimates and Applications to Stabilization and Controllability, Volume I; Dirichlet Boundary C Jérôme Le Rousseau,Gilles

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Carleman Estimate for a Second-Order Elliptic OperatorConsider a general second-order elliptic operator . with a principal part of the form . where . with all derivatives bounded and such that .. = .., 1 ≤ ., . ≤ .. We recall that . = −.. The elliptic operator under consideration is then . where ., 1 ≤ . ≤ ..
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Elliptic Operator with Dirichlet Data and Associated SemigroupOn a smooth bounded open set . of ., we consider elliptic second-order operator .. given by . where . with furthermore .. = .., 1 ≤ ., . ≤ .. In addition we shall impose Dirichlet boundary conditions, that is, the trace of the solution at the boundary ..
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Some Elements of Functional AnalysisHere, . and .  will denote Banach spaces with their norms denoted by ∥.∥., ∥.∥., or simply ∥.∥when there is no ambiguity.
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Book 2022ons, including the stabilization property of the damped wave equation and the null-controllability of the heat equation.  All analysis is performed in the case of open sets in the Euclidean space; a second volume will extend this treatment to Riemannian manifolds..The first three chapters illustrate
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Introductionan estimates has gone beyond the original domain; they are also used in the study of stabilization and controllability properties of partial differential equations, two applications we shall consider in this book. Inverse problems are also a field of applications for Carleman estimate; we shall however not touch upon that subject.
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Controllability of Parabolic Equations, in the time interval (0, .), with homogeneous Dirichlet boundary conditions, and for an initial condition .. in ..(.), is given by . The function . is the control. The goal is to drive the solution . to a prescribe state at time . > 0, yet only acting in the sub-domain .. We shall make precise what can actually be achieved below.
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