English

Curious properties of free hypergraph C*-algebras

Operator Algebras 2020-04-06 v3 Logic Quantum Physics

Abstract

A finite hypergraph HH consists of a finite set of vertices V(H)V(H) and a collection of subsets E(H)2V(H)E(H) \subseteq 2^{V(H)} which we consider as partition of unity relations between projection operators. These partition of unity relations freely generate a universal C*-algebra, which we call the "free hypergraph C*-algebra" C(H)C^*(H). General free hypergraph C*-algebras were first studied in the context of quantum contextuality. As special cases, the class of free hypergraph C*-algebras comprises quantum permutation groups, maximal group C*-algebras of graph products of finite cyclic groups, and the C*-algebras associated to quantum graph homomorphism, isomorphism, and colouring. Here, we conduct the first systematic study of aspects of free hypergraph C*-algebras. We show that they coincide with the class of finite colimits of finite-dimensional commutative C*-algebras, and also with the class of C*-algebras associated to synchronous nonlocal games. We had previously shown that it is undecidable to determine whether C(H)C^*(H) is nonzero for given HH. We now show that it is also undecidable to determine whether a given C(H)C^*(H) is residually finite-dimensional, and similarly whether it only has infinite-dimensional representations, and whether it has a tracial state. It follows that for each one of these properties, there is HH such that the question whether C(H)C^*(H) has this property is independent of the ZFC axioms, assuming that these are consistent. We clarify some of the subtleties associated with such independence results in an appendix.

Keywords

Cite

@article{arxiv.1808.09220,
  title  = {Curious properties of free hypergraph C*-algebras},
  author = {Tobias Fritz},
  journal= {arXiv preprint arXiv:1808.09220},
  year   = {2020}
}

Comments

19 pages. v2: minor clarifications. v3: terminology 'free hypergraph C*-algebra', added Remark 2.21

R2 v1 2026-06-23T03:46:02.191Z