Word-Length Spectral Triples of (Z/2Z)d Are Not Metric
Mario Klisse
Abstract
Given a countable discrete group equipped with a proper length function, one can construct a natural spectral triple on its reduced group C-algebra. A well-studied question in non-commutative metric geometry is whether the Connes pseudo-metric associated with such a triple recovers the weak-topology on the state space, thereby yielding a compact quantum metric space in the sense of Rieffel. While this metric property is known to hold for several classes of groups - including those of polynomial growth and word-hyperbolic groups - it was widely expected that not every word-length function induces a compact quantum metric space. Despite this, no explicit counterexample has been identified to date. In this note, we provide the first family of counterexamples by proving that for every integer d ≥ 2 the canonical spectral triple of the Lamplighter group (Z/2Z)d, equipped with the word-length function associated with a finite symmetric generating set, fails to be a spectral metric space.
Create a lesson
Related papers
Maximal Algebraic Ideals in Nonunital C*-Algebras
Zhichao Liu, Xin Ma
Quasidiagonal traces need not form a face
Mehdi Moradi
Cohomology of Amenable Traces
Mehdi Moradi
Linear maps preserving Kasparov cycles and the characterization of induced automorphisms
Kamran Sharifi
Involution-preserving ring isomorphisms in norm between unital C*-algebras
Izuho Matsuzaki
The Operator Daugavet Property in Semifinite Noncommutative L1-Spaces
Junxiang Qi, Qi Liu, Yongjin Li