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Ricci flow and the sphere theorem / Simon Brendle.

Math/Physics/Astronomy Library QA377.3 .B74 2010
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Format:
Book
Author/Creator:
Brendle, Simon, 1981-
Series:
Graduate studies in mathematics ; v. 111.
Graduate studies in mathematics ; v. 111
Language:
English
Subjects (All):
Ricci flow.
Sphere.
Physical Description:
vii, 176 pages ; 27 cm.
Place of Publication:
Providence, R.I. : American Mathematical Society, [2010]
Summary:
"In 1982, R. Hamilton introduced a nonlinear evolution equation for Riemannian metrics with the aim of finding canonical metrics on manifolds. This evolution equation is known as the Ricci flow, and it has since been used widely and with great success, most notably in Perelman's solution of the Poincare conjecture. Furthermore, various convergence theorems have been established. This book provides a concise introduction to the subject as well as a comprehensive account of the convergence theory for the Ricci flow. The proofs rely mostly on maximum principle arguments. Special emphasis is placed on preserved curvature conditions, such as positive isotropic curvature. One of the major consequences of this theory is the Differentiable Sphere Theorem: a compact Riemannian manifold, whose sectional curvatures all lie in the interval (1,4], is diffeomorphic to a spherical space form. This question has a long history, dating back to a seminal paper by H. E. Rauch in 1951, and it was resolved in 2007 by the author and Richard Schoen."--Publisher's description.
Contents:
A survey of sphere theorems in geometry
Hamilton's Ricci flow
Interior estimates
Ricci flow on S2
Pointwise curvature estimates
Curvature pinching in dimension 3
Preserved curvature conditions in higher dimensions
Convergence results in higher dimensions
Rigidity results.
Notes:
Includes bibliographical references and index.
ISBN:
9780821849385
0821849387
OCLC:
436866951

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