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Dynamical Systems on Spectral Metric Spaces

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arxiv 1008.4617 v1 pith:KIGICTFK submitted 2010-08-26 math.OA

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keywords metricspectraldynamicalspacesystemtriplealgebraalpha
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abstract

Let (A,H,D) be a spectral triple, namely: A is a C*-algebra, H is a Hilbert space on which A acts and D is a selfadjoint operator with compact resolvent such that the set of elements of A having a bounded commutator with D is dense. A spectral metric space, the noncommutative analog of a complete metric space, is a spectral triple (A,H,D) with additional properties which guaranty that the Connes metric induces the weak*-topology on the state space of A. A *-automorphism respecting the metric defined a dynamical system. This article gives various answers to the question: is there a canonical spectral triple based upon the crossed product algebra AxZ, characterizing the metric properties of the dynamical system ? If $\alpha$ is the noncommutative analog of an isometry the answer is yes. Otherwise, the metric bundle construction of Connes and Moscovici is used to replace (A,$\alpha$) by an equivalent dynamical system acting isometrically. The difficulties relating to the non compactness of this new system are discussed. Applications, in number theory, in coding theory are given at the end.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Word-Length Spectral Triples of $(\mathbb{Z}/2\mathbb{Z})\wr\mathbb{F}_{d}$ Are Not Metric

    math.OA 2026-08 accept novelty 8.0 of 10

    For every d≥2, the canonical word-length spectral triple of (Z/2Z)≀F_d is not a spectral metric space, giving the first family of such counterexamples.

  2. Compact quantum metric spaces from free probability

    math.OA 2026-06 unverdicted novelty 6.0 of 10

    Defines compact quantum metric spaces for q-Gaussians via length-like functions and semigroup-regularized Lip-norms from generating sets, then transfers the structure to free Gibbs laws using free transport.

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