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Elliptic systems of phase transition type

This book focuses on the vector Allen-Cahn equation, which models coexistence of three or more phases and is related to Plateau complexes – non-orientable objects with a stratified structure. The minimal solutions of the vector equation exhibit an analogous structure not present in the scalar Allen-...

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Detalles Bibliográficos
Autores principales: Alikakos, Nicholas D, Fusco, Giorgio, Smyrnelis, Panayotis
Lenguaje:eng
Publicado: Springer 2018
Materias:
Acceso en línea:https://dx.doi.org/10.1007/978-3-319-90572-3
http://cds.cern.ch/record/2657816
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author Alikakos, Nicholas D
Fusco, Giorgio
Smyrnelis, Panayotis
author_facet Alikakos, Nicholas D
Fusco, Giorgio
Smyrnelis, Panayotis
author_sort Alikakos, Nicholas D
collection CERN
description This book focuses on the vector Allen-Cahn equation, which models coexistence of three or more phases and is related to Plateau complexes – non-orientable objects with a stratified structure. The minimal solutions of the vector equation exhibit an analogous structure not present in the scalar Allen-Cahn equation, which models coexistence of two phases and is related to minimal surfaces. The 1978 De Giorgi conjecture for the scalar problem was settled in a series of papers: Ghoussoub and Gui (2d), Ambrosio and Cabré (3d), Savin (up to 8d), and del Pino, Kowalczyk and Wei (counterexample for 9d and above). This book extends, in various ways, the Caffarelli-Córdoba density estimates that played a major role in Savin's proof. It also introduces an alternative method for obtaining pointwise estimates. Key features and topics of this self-contained, systematic exposition include: • Resolution of the structure of minimal solutions in the equivariant class, (a) for general point groups, and (b) for general discrete reflection groups, thus establishing the existence of previously unknown lattice solutions. • Preliminary material beginning with the stress-energy tensor, via which monotonicity formulas, and Hamiltonian and Pohozaev identities are developed, including a self-contained exposition of the existence of standing and traveling waves. • Tools that allow the derivation of general properties of minimizers, without any assumptions of symmetry, such as a maximum principle or density and pointwise estimates. • Application of the general tools to equivariant solutions rendering exponential estimates, rigidity theorems and stratification results. This monograph is addressed to readers, beginning from the graduate level, with an interest in any of the following: differential equations – ordinary or partial; nonlinear analysis; the calculus of variations; the relationship of minimal surfaces to diffuse interfaces; or the applied mathematics of materials science.
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spelling cern-26578162021-04-21T18:36:39Zdoi:10.1007/978-3-319-90572-3http://cds.cern.ch/record/2657816engAlikakos, Nicholas DFusco, GiorgioSmyrnelis, PanayotisElliptic systems of phase transition typeMathematical Physics and MathematicsThis book focuses on the vector Allen-Cahn equation, which models coexistence of three or more phases and is related to Plateau complexes – non-orientable objects with a stratified structure. The minimal solutions of the vector equation exhibit an analogous structure not present in the scalar Allen-Cahn equation, which models coexistence of two phases and is related to minimal surfaces. The 1978 De Giorgi conjecture for the scalar problem was settled in a series of papers: Ghoussoub and Gui (2d), Ambrosio and Cabré (3d), Savin (up to 8d), and del Pino, Kowalczyk and Wei (counterexample for 9d and above). This book extends, in various ways, the Caffarelli-Córdoba density estimates that played a major role in Savin's proof. It also introduces an alternative method for obtaining pointwise estimates. Key features and topics of this self-contained, systematic exposition include: • Resolution of the structure of minimal solutions in the equivariant class, (a) for general point groups, and (b) for general discrete reflection groups, thus establishing the existence of previously unknown lattice solutions. • Preliminary material beginning with the stress-energy tensor, via which monotonicity formulas, and Hamiltonian and Pohozaev identities are developed, including a self-contained exposition of the existence of standing and traveling waves. • Tools that allow the derivation of general properties of minimizers, without any assumptions of symmetry, such as a maximum principle or density and pointwise estimates. • Application of the general tools to equivariant solutions rendering exponential estimates, rigidity theorems and stratification results. This monograph is addressed to readers, beginning from the graduate level, with an interest in any of the following: differential equations – ordinary or partial; nonlinear analysis; the calculus of variations; the relationship of minimal surfaces to diffuse interfaces; or the applied mathematics of materials science.Springeroai:cds.cern.ch:26578162018
spellingShingle Mathematical Physics and Mathematics
Alikakos, Nicholas D
Fusco, Giorgio
Smyrnelis, Panayotis
Elliptic systems of phase transition type
title Elliptic systems of phase transition type
title_full Elliptic systems of phase transition type
title_fullStr Elliptic systems of phase transition type
title_full_unstemmed Elliptic systems of phase transition type
title_short Elliptic systems of phase transition type
title_sort elliptic systems of phase transition type
topic Mathematical Physics and Mathematics
url https://dx.doi.org/10.1007/978-3-319-90572-3
http://cds.cern.ch/record/2657816
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AT smyrnelispanayotis ellipticsystemsofphasetransitiontype