Global Riemannian Geometry: Curvature and Topology

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Details

This book contains a clear exposition of two contemporary topics in modern differential geometry:

  • distance geometric analysis on manifolds, in particular, comparison theory for distance functions in spaces which have well defined bounds on their curvature

  • the study of scalar curvature rigidity and positive mass theorems using spinors and the Dirac operator
    It is intended for both graduate students and researchers.

    This second edition has been updated to include recent developments such as promising results concerning the geometry of exit time moment spectra and potential analysis in weighted Riemannian manifolds, as well as results pertaining to an early conjecture on the geometry of the scalar curvature and speculations on new geometric approaches to the Index Theorem.

    Discussion of the Laplacian as a 'swift' operator on minimal submanifolds in ambient spaces with small sectional curvatures Use of Dirac operators for general relativity Contains a clear exposition of contemporary topics in modern differential geometry

    Autorentext

    Ana Hurtado is a professor at the Universidad de Granada.

    Steen Markvorsen is a professor at the Technical University of Denmark.

    Maung Min-Oo is emeritus professor at the McMaster University.

    Vicente Palmer is a professor of Geometry at the University Jaume I.

    Inhalt
    Distance Geometric Analysis on Manifolds.- The Dirac Operator in Geometry and Physics.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783030552923
    • Sprache Englisch
    • Auflage 2nd edition 2020
    • Größe H240mm x B168mm x T8mm
    • Jahr 2020
    • EAN 9783030552923
    • Format Kartonierter Einband
    • ISBN 3030552926
    • Veröffentlichung 20.08.2020
    • Titel Global Riemannian Geometry: Curvature and Topology
    • Autor Ana Hurtado , Vicente Palmer , Maung Min-Oo , Steen Markvorsen
    • Untertitel Second Edition, Advanced Courses in Mathematics - CRM Barcelona
    • Gewicht 236g
    • Herausgeber Springer International Publishing
    • Anzahl Seiten 132
    • Lesemotiv Verstehen
    • Genre Mathematik

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