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Publisher:
Cambridge University Press
Online publication date:
November 2022
Print publication year:
2023
Online ISBN:
9781009291309
Creative Commons:
Creative Common License - CC Creative Common License - BY Creative Common License - NC Creative Common License - ND
This content is Open Access and distributed under the terms of the Creative Commons Attribution licence CC-BY-NC-ND 4.0 https://creativecommons.org/creativelicenses

Book description

This book offers a systematic exposition of conformal methods and how they can be used to study the global properties of solutions to the equations of Einstein's theory of gravity. It shows that combining these ideas with differential geometry can elucidate the existence and stability of the basic solutions of the theory. Introducing the differential geometric, spinorial and PDE background required to gain a deep understanding of conformal methods, this text provides an accessible account of key results in mathematical relativity over the last thirty years, including the stability of de Sitter and Minkowski spacetimes. For graduate students and researchers, this self-contained account includes useful visual models to help the reader grasp abstract concepts and a list of further reading, making this an ideal reference companion on the topic. This title, first published in 2016, has been reissued as an Open Access publication on Cambridge Core.

Reviews

'The work serves as an excellent reference on conformal methods for advanced students and researchers. … the text is written well, thoroughly researched, and self-contained.'

A. Spero Source: Choice

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Contents

Full book PDF

Page 1 of 2


  • Frontmatter
    pp i-vi
  • Dedication
    pp vii-viii
  • Contents
    pp ix-xiv
  • Preface
    pp xv-xvii
  • Acknowledgements
    pp xviii-xix
  • Symbols
    pp xx-xxx
  • 1 - Introduction
    pp 1-24
  • Part I - Geometric tools
    pp 25-26
  • 2 - Differential geometry
    pp 27-63
  • 3 - Spacetime spinors
    pp 64-93
  • 4 - Space spinors
    pp 94-111
  • 5 - Conformal geometry
    pp 112-138
  • Part II - General relativity and conformal geometry
    pp 139-140
  • 6 - Conformal extensions of exact solutions
    pp 141-177
  • 7 - Asymptotic simplicity
    pp 178-183
  • 8 - The conformal Einstein field equations
    pp 184-210
  • 9 - Matter models
    pp 211-221
  • 10 - Asymptotics
    pp 222-244
  • Part III - Methods of the theory of partial differential equations
    pp 245-246
  • 11 - The conformal constraint equations
    pp 247-293
  • 12 - Methods of the theory of hyperbolic differential equations
    pp 294-330
  • 13 - Hyperbolic reductions
    pp 331-389
  • 14 - Matter models
    pp 390-404
  • Part IV - Applications
    pp 405-406
  • 15 - De Sitter-like spacetimes
    pp 407-436
  • 16 - Minkowski-like spacetimes
    pp 437-453
  • 17 - Anti-de Sitter-like spacetimes
    pp 454-476
  • 18 - Characteristic problems for the conformal field equations
    pp 477-503
  • 19 - Static solutions
    pp 504-526
  • 20 - Spatial infinity
    pp 527-559

Page 1 of 2


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