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On extensions of partial isometries

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arxiv 1903.09723 v3 pith:QMDZLWWA submitted 2019-03-22 math.LO math.FAmath.MG

classification math.LOmath.FAmath.MG
keywords spacemetricultraextensivecountableeverycompactextendedfinite
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In this paper we define a notion of S-extension for a metric space and study minimality and coherence of S-extensions. We show that every S-extension can be identified with an algebraic object. We use this algebraic representation to give a complete characterization of all finite minimal S-extensions of a given finite metric space and a complete characterization of all minimal coherent S-extensions. We also define a notion of ultraextensive metric spaces and show that every countable metric space can be extended to a countable ultraextensive metric space. %As an application, we show that every countable subset of the Urysohn metric space can be extended to a countable dense ultraextensive subset of the Urysohn space. We also show that the isometry group of an infinite ultraextensive metric space has a dense locally finite subgroup, generalizing several previously known results. We also study compact ultrametric spaces and show that every compact ultrametric space can be extended to a compact ultraextensive ultrametric space.

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  1. On Extensions of Partial Isomorphisms

    math.LO 2019-08 conditional novelty 7.0 of 10

    Every countable relational structure can be extended to an ultraextensive structure, and the resulting automorphism groups contain a dense locally finite subgroup.

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