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String Topology and Cyclic Homology [electronic resource] / by Ralph L. Cohen, Kathryn Hess, Alexander A. Voronov.

By: Contributor(s): Material type: TextTextSeries: Advanced Courses in Mathematics - CRM BarcelonaPublisher: Basel : Birkhäuser Basel, 2006Description: VII, 163 p. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783764373887
Subject(s): Additional physical formats: Printed edition:: No title; Printed edition:: No titleDDC classification:
  • 514.2 23
LOC classification:
  • QA612-612.8
Online resources:
Contents:
Notes on String Topology -- Intersection theory in loop spaces -- The cacti operad -- Field theoretic properties of string topology -- A Morse theoretic viewpoint -- Brane topology -- An Algebraic Model for Mod 2 Topological Cyclic Homology -- Preliminaries -- Free loop spaces -- Homotopy orbit spaces -- A model for mod 2 topological cyclic homology.
In: Springer eBooksSummary: The subject of this book is string topology, Hochschild and cyclic homology. The first part consists of an excellent exposition of various approaches to string topology and the Chas-Sullivan loop product. The second gives a complete and clear construction of an algebraic model for computing topological cyclic homology. The book provides many references for the reader wishing to learn more about the subject, to which it gives a perfect introduction. It is therefore suitable for both graduate students and established researchers. It is certainly the best source of much information that was until now available only to specialists and covers material from the elementary bases to the most recent developments.
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Notes on String Topology -- Intersection theory in loop spaces -- The cacti operad -- Field theoretic properties of string topology -- A Morse theoretic viewpoint -- Brane topology -- An Algebraic Model for Mod 2 Topological Cyclic Homology -- Preliminaries -- Free loop spaces -- Homotopy orbit spaces -- A model for mod 2 topological cyclic homology.

The subject of this book is string topology, Hochschild and cyclic homology. The first part consists of an excellent exposition of various approaches to string topology and the Chas-Sullivan loop product. The second gives a complete and clear construction of an algebraic model for computing topological cyclic homology. The book provides many references for the reader wishing to learn more about the subject, to which it gives a perfect introduction. It is therefore suitable for both graduate students and established researchers. It is certainly the best source of much information that was until now available only to specialists and covers material from the elementary bases to the most recent developments.

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