Mean Curvature Flow and Isoperimetric Inequalities

Mean Curvature Flow and Isoperimetric Inequalities
Author: Manuel Ritoré,Carlo Sinestrari
Publsiher: Springer Science & Business Media
Total Pages: 113
Release: 2010-01-01
Genre: Mathematics
ISBN: 9783034602136

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Geometric flows have many applications in physics and geometry. The mean curvature flow occurs in the description of the interface evolution in certain physical models. This is related to the property that such a flow is the gradient flow of the area functional and therefore appears naturally in problems where a surface energy is minimized. The mean curvature flow also has many geometric applications, in analogy with the Ricci flow of metrics on abstract riemannian manifolds. One can use this flow as a tool to obtain classification results for surfaces satisfying certain curvature conditions, as well as to construct minimal surfaces. Geometric flows, obtained from solutions of geometric parabolic equations, can be considered as an alternative tool to prove isoperimetric inequalities. On the other hand, isoperimetric inequalities can help in treating several aspects of convergence of these flows. Isoperimetric inequalities have many applications in other fields of geometry, like hyperbolic manifolds.

Isoperimetric Inequalities in Riemannian Manifolds

Isoperimetric Inequalities in Riemannian Manifolds
Author: Manuel Ritoré
Publsiher: Springer Nature
Total Pages: 470
Release: 2023-10-06
Genre: Mathematics
ISBN: 9783031379017

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This work gives a coherent introduction to isoperimetric inequalities in Riemannian manifolds, featuring many of the results obtained during the last 25 years and discussing different techniques in the area. Written in a clear and appealing style, the book includes sufficient introductory material, making it also accessible to graduate students. It will be of interest to researchers working on geometric inequalities either from a geometric or analytic point of view, but also to those interested in applying the described techniques to their field.

Mean Curvature Flow

Mean Curvature Flow
Author: Theodora Bourni,Mat Langford
Publsiher: Walter de Gruyter GmbH & Co KG
Total Pages: 149
Release: 2020-12-07
Genre: Mathematics
ISBN: 9783110618365

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With contributions by leading experts in geometric analysis, this volume is documenting the material presented in the John H. Barrett Memorial Lectures held at the University of Tennessee, Knoxville, on May 29 - June 1, 2018. The central topic of the 2018 lectures was mean curvature flow, and the material in this volume covers all recent developments in this vibrant area that combines partial differential equations with differential geometry.

Isoperimetric Inequalities

Isoperimetric Inequalities
Author: Isaac Chavel
Publsiher: Cambridge University Press
Total Pages: 292
Release: 2001-07-23
Genre: Mathematics
ISBN: 0521802679

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This advanced introduction emphasizes the variety of ideas, techniques, and applications of the subject.

Lecture Notes on Mean Curvature Flow

Lecture Notes on Mean Curvature Flow
Author: Carlo Mantegazza
Publsiher: Springer Science & Business Media
Total Pages: 175
Release: 2011-07-28
Genre: Mathematics
ISBN: 9783034801454

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This book is an introduction to the subject of mean curvature flow of hypersurfaces with special emphasis on the analysis of singularities. This flow occurs in the description of the evolution of numerous physical models where the energy is given by the area of the interfaces. These notes provide a detailed discussion of the classical parametric approach (mainly developed by R. Hamilton and G. Huisken). They are well suited for a course at PhD/PostDoc level and can be useful for any researcher interested in a solid introduction to the technical issues of the field. All the proofs are carefully written, often simplified, and contain several comments. Moreover, the author revisited and organized a large amount of material scattered around in literature in the last 25 years.

Analytic Aspects of Convexity

Analytic Aspects of Convexity
Author: Gabriele Bianchi,Andrea Colesanti,Paolo Gronchi
Publsiher: Springer
Total Pages: 120
Release: 2018-02-28
Genre: Mathematics
ISBN: 9783319718347

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This book presents the proceedings of the international conference Analytic Aspects in Convexity, which was held in Rome in October 2016. It offers a collection of selected articles, written by some of the world’s leading experts in the field of Convex Geometry, on recent developments in this area: theory of valuations; geometric inequalities; affine geometry; and curvature measures. The book will be of interest to a broad readership, from those involved in Convex Geometry, to those focusing on Functional Analysis, Harmonic Analysis, Differential Geometry, or PDEs. The book is a addressed to PhD students and researchers, interested in Convex Geometry and its links to analysis.

Regularity Theory for Mean Curvature Flow

Regularity Theory for Mean Curvature Flow
Author: Klaus Ecker
Publsiher: Springer Science & Business Media
Total Pages: 192
Release: 2004
Genre: Mathematics
ISBN: 0817632433

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* Devoted to the motion of surfaces for which the normal velocity at every point is given by the mean curvature at that point; this geometric heat flow process is called mean curvature flow. * Mean curvature flow and related geometric evolution equations are important tools in mathematics and mathematical physics.

Space Time Matter

Space     Time     Matter
Author: Jochen Brüning,Matthias Staudacher
Publsiher: Walter de Gruyter GmbH & Co KG
Total Pages: 517
Release: 2018-04-09
Genre: Mathematics
ISBN: 9783110451535

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This monograph describes some of the most interesting results obtained by the mathematicians and physicists collaborating in the CRC 647 "Space – Time – Matter", in the years 2005 - 2016. The work presented concerns the mathematical and physical foundations of string and quantum field theory as well as cosmology. Important topics are the spaces and metrics modelling the geometry of matter, and the evolution of these geometries. The partial differential equations governing such structures and their singularities, special solutions and stability properties are discussed in detail. Contents Introduction Algebraic K-theory, assembly maps, controlled algebra, and trace methods Lorentzian manifolds with special holonomy – Constructions and global properties Contributions to the spectral geometry of locally homogeneous spaces On conformally covariant differential operators and spectral theory of the holographic Laplacian Moduli and deformations Vector bundles in algebraic geometry and mathematical physics Dyson–Schwinger equations: Fix-point equations for quantum fields Hidden structure in the form factors ofN = 4 SYM On regulating the AdS superstring Constraints on CFT observables from the bootstrap program Simplifying amplitudes in Maxwell-Einstein and Yang-Mills-Einstein supergravities Yangian symmetry in maximally supersymmetric Yang-Mills theory Wave and Dirac equations on manifolds Geometric analysis on singular spaces Singularities and long-time behavior in nonlinear evolution equations and general relativity