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This book gives a presentation of topics in Hamilton's Ricci flow
for graduate students and mathematicians interested in working in
the subject. The authors have aimed at presenting technical
material in a clear and detailed manner. In this volume, geometric
aspects of the theory have been emphasized. The book presents the
theory of Ricci solitons, Kahler-Ricci flow, compactness theorems,
Perelman's entropy monotonicity and no local collapsing, Perelman's
reduced distance function and applications to ancient solutions,
and a primer of 3-manifold topology. Various technical aspects of
Ricci flow have been explained in a clear and detailed manner. The
authors have tried to make some advanced material accessible to
graduate students and nonexperts. The book gives a rigorous
introduction to Perelman's work and explains technical aspects of
Ricci flow useful for singularity analysis. Throughout, there are
appropriate references so that the reader may further pursue the
statements and proofs of the variou
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Hamilton's Ricci Flow
Bennett Chow, Peng Lu, Lei Ni
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R2,441
Discovery Miles 24 410
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Ships in 12 - 17 working days
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Ricci flow is a powerful analytic method for studying the geometry
and topology of manifolds. This book is an introduction to Ricci
flow for graduate students and mathematicians interested in working
in the subject. To this end, the first chapter is a review of the
relevant basics of Riemannian geometry. For the benefit of the
student, the text includes a number of exercises of varying
difficulty. The book also provides brief introductions to some
general methods of geometric analysis and other geometric flows.
Comparisons are made between the Ricci flow and the linear heat
equation, mean curvature flow, and other geometric evolution
equations whenever possible. Several topics of Hamilton's program
are covered, such as short time existence, Harnack inequalities,
Ricci solitons, Perelman's no local collapsing theorem, singularity
analysis, and ancient solutions. A major direction in Ricci flow,
via Hamilton's and Perelman's works, is the use of Ricci flow as an
approach to solving the Poincare conjecture and Thurston's
geometrization conjecture.
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