On the Topology of Isolated Singularities in Analytic Spaces

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The aim of this book is to give an overview of selected topics on the topology of real and complex isolated singularities, with emphasis on its relations to other branches of geometry and topology.
The first chapters are mostly devoted to complex singularities and a myriad of results spread in a vast literature, which are presented here in a unified way, accessible to non-specialists. Among the topics are the fibration theorems of Milnor; the relation with 3-dimensional Lie groups; exotic spheres; spin structures and 3-manifold invariants; the geometry of quadrics and Arnold's theorem which states that the complex projective plane modulo conjugation is the 4-sphere.
The second part of the book studies pioneer work about real analytic singularities which arise from the topological and geometric study of holomorphic vector fields and foliations. In the low dimensional case these turn out to be related to fibred links in the 3-sphere defined by meromorphic functions. This provides new methods for constructing manifolds equipped with a rich geometry.
The book is largely self-contained and serves a wide audience of graduate students, mathematicians and researchers interested in geometry and topology.

Author(s): José Seade (auth.)
Series: Progress in Mathematics 241
Edition: 1
Publisher: Birkhäuser Basel
Year: 2006

Language: English
Pages: 238
Tags: Functions of a Complex Variable; Topological Groups, Lie Groups; Differential Geometry; Algebraic Topology

Introduction....Pages 1-10
A Fast Trip Through the Classical Theory....Pages 11-33
Motions in Plane Geometry and the 3-dimensional Brieskorn Manifolds....Pages 35-63
3-dimensional Lie Groups and Surface Singularities....Pages 65-90
Within the Realm of the General Index Theorem....Pages 91-136
On the Geometry and Topology of Quadrics in ℂℙ n ....Pages 137-155
Real Singularities and Complex Geometry....Pages 157-173
Real Singularities with a Milnor Fibration....Pages 175-198
Real Singularities and Open Book Decompositions of the 3-sphere....Pages 199-219