2025/10/23 by Tobias Hartnick, Hartnick, Tobias, Filippo Sarti +1
Mathematics · #Advanced Operator Algebra Research #Dynamical Systems (math.DS) #FOS: Mathematics #Geometric and Algebraic Topology #Group Theory (math.GR) #Homotopy and Cohomology in Algebraic Topology
paper · pdf · doi:10.48550/arxiv.2510.20656
openalex publication_date 2025/10/23 · openalex created_date 2025/10/25 · openalex updated_date 2026/07/28
We establish an induction isomorphism in the context of measurable bounded cohomology of discrete measured groupoid, which generalizes the Eckmann-Shapiro isomorphism in bounded cohomology of lattices due to Burger and Monod. In our wider setting, the role of lattices is taken by the class of transverse measured groupoids (G, ν) associated with a cross-section Y in a pmp dynamical system (X, μ) of a lcsc group G such that the associated hitting time process of Y is locally integrable. Typical examples are given by pattern groupoids of strong approximate lattices. Under the assumptions that G is unimodular we show that the measurable bounded cohomology of (G, ν) is isomorphic to the continuous bounded cohomology of G with coefficients in L∞(X, μ). As a consequence, if G is amenable, then (G, ν) is boundedly acyclic, and in general the restriction map Hcb^\bullet (G; ℝ) → Hmb^\bullet ((G, ν);\underlineℝ) is injective. Moreover, it follows from known results in continuous bounded cohomology that if G is a semisimple higher rank Lie group of Hermitian (respectively complex classical) type, then the second (respectively third) measurable bounded cohomology of (G, ν) is generated by the restriction of the bounded Kähler class (respectively bounded Borel class). These are the first explicit computations of non-trivial bounded cohomology groups of measured groupoids which are not isomorphic to an action groupoid.