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Non-Archimedean Tame Topology and Stably Dominated Types (Annals of Mathematics Studies)

By: Ehud Hrushovski (Author) , Francois Loeser (Author)

Extended Catalogue

Ksh 35,100.00

Format: Hardback or Cased Book

ISBN-10: 0691161682

ISBN-13: 9780691161686

Collection / Series: Annals of Mathematics Studies

Collection Type: Publisher collection

Publisher: Princeton University Press

Imprint: Princeton University Press

Country of Manufacture: US

Country of Publication: GB

Publication Date: Feb 9th, 2016

Publication Status: Active

Product extent: 232 Pages

Weight: 570.00 grams

Dimensions (height x width x thickness): 18.50 x 26.20 x 1.90 cms

Product Classification / Subject(s): Analytic geometry
Algebraic geometry
Topology

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Over the field of real numbers, analytic geometry has long been in deep interaction with algebraic geometry, bringing the latter subject many of its topological insights. In recent decades, model theory has joined this work through the theory of o-minimality, providing finiteness and uniformity statements and new structural tools. For non-archimed

Over the field of real numbers, analytic geometry has long been in deep interaction with algebraic geometry, bringing the latter subject many of its topological insights. In recent decades, model theory has joined this work through the theory of o-minimality, providing finiteness and uniformity statements and new structural tools.

For non-archimedean fields, such as the p-adics, the Berkovich analytification provides a connected topology with many thoroughgoing analogies to the real topology on the set of complex points, and it has become an important tool in algebraic dynamics and many other areas of geometry.

This book lays down model-theoretic foundations for non-archimedean geometry. The methods combine o-minimality and stability theory. Definable types play a central role, serving first to define the notion of a point and then properties such as definable compactness.

Beyond the foundations, the main theorem constructs a deformation retraction from the full non-archimedean space of an algebraic variety to a rational polytope. This generalizes previous results of V. Berkovich, who used resolution of singularities methods.

No previous knowledge of non-archimedean geometry is assumed. Model-theoretic prerequisites are reviewed in the first sections.


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