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Covering dimension of C*-algebras and 2-coloured classification

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abstract

We introduce the concept of finitely coloured equivalence for unital *-homomorphisms between C*-algebras, for which unitary equivalence is the 1-coloured case. We use this notion to classify *-homomorphisms from separable, unital, nuclear C*-algebras into ultrapowers of simple, unital, nuclear, Z-stable C*-algebras with compact extremal trace space up to 2-coloured equivalence by their behaviour on traces; this is based on a 1-coloured classification theorem for certain order zero maps, also in terms of tracial data. As an application we calculate the nuclear dimension of non-AF, simple, separable, unital, nuclear, Z-stable C*-algebras with compact extremal trace space: it is 1. In the case that the extremal trace space also has finite topological covering dimension, this confirms the remaining open implication of the Toms-Winter conjecture. Inspired by homotopy-rigidity theorems in geometry and topology, we derive a "homotopy equivalence implies isomorphism" result for large classes of C*-algebras with finite nuclear dimension.

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math.OA 1

years

2019 1

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ACCEPT 1

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2-positive almost order zero maps and decomposition rank

math.OA · 2019-08-09 · accept · novelty 7.0

Every 2-positive order zero map between C*-algebras is completely positive, and for unital separable C*-algebras finite decomposition rank can be characterized using 2-positive maps in place of completely positive ones.

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  • 2-positive almost order zero maps and decomposition rank math.OA · 2019-08-09 · accept · none · ref 2 · internal anchor

    Every 2-positive order zero map between C*-algebras is completely positive, and for unital separable C*-algebras finite decomposition rank can be characterized using 2-positive maps in place of completely positive ones.