English

A noncommutative integral on spectrally truncated spectral triples, and a link with quantum ergodicity

Operator Algebras 2025-08-04 v2 Functional Analysis Spectral Theory

Abstract

We propose a simple approximation of the noncommutative integral in noncommutative geometry for the Connes--Van Suijlekom paradigm of spectrally truncated spectral triples. A close connection between this approximation and the field of quantum ergodicity and work by Widom in particular immediately provides a Szeg\H{o} limit formula for noncommutative geometry. We then make a connection to the density of states. Finally, we propose a definition for the ergodicity of geodesic flow for compact spectral triples. This definition is known in quantum ergodicity as uniqueness of the vacuum state for CC^*-dynamical systems, and for spectral triples where local Weyl laws hold this implies that the Dirac operator of the spectral triple is quantum ergodic. This brings to light a close connection between quantum ergodicity and Connes' integral formula.

Keywords

Cite

@article{arxiv.2412.00628,
  title  = {A noncommutative integral on spectrally truncated spectral triples, and a link with quantum ergodicity},
  author = {Eva-Maria Hekkelman and Edward A. McDonald},
  journal= {arXiv preprint arXiv:2412.00628},
  year   = {2025}
}

Comments

33 pages, no figures. Added a section on the density of states. To appear in J. Funct. Anal