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Lie groupoids determined by their orbit spaces

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arxiv 2310.11968 v2 pith:EBHVXNSL submitted 2023-10-18 math.DG

classification math.DG
keywords groupoidslift-completediffeologicalgroupoidorbitspacesarrowscategory
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Given a Lie groupoid, we can form its orbit space, which carries a natural diffeology. More generally, we have a quotient functor from the Hilsum-Skandalis category of Lie groupoids to the category of diffeological spaces. We introduce the notion of a lift-complete Lie groupoid, and show that the quotient functor restricts to an equivalence of the categories: of lift-complete Lie groupoids with isomorphism classes of surjective submersive bibundles as arrows, and of quasi-\'{e}tale diffeological spaces with surjective local subductions as arrows. In particular, the Morita equivalence class of a lift-complete Lie groupoid, alternatively a lift-complete differentiable stack, is determined by its diffeological orbit space. Examples of lift-complete Lie groupoids include quasifold groupoids and \'{e}tale holonomy groupoids of Riemannian foliations.

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Cited by 1 Pith paper

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  1. Diffeological Riemannian orbifolds

    math.DG 2026-07 accept novelty 6.5 of 10

    Riemannian metrics on orbifold stacks are equivalent to weak Riemannian metrics on the corresponding diffeological orbit spaces; regularity is necessary and properness is sufficient for the descent.

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