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Higher Airy structures, W algebras and topological recursion

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arxiv 1812.08738 v4 pith:R6AJDB4Q submitted 2018-12-20 math-ph hep-thmath.AGmath.MPmath.RT

classification math-phhep-thmath.AGmath.MPmath.RT
keywords mathfrakairystructureshigherquantummathcalrecursiontopological
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abstract

We define higher quantum Airy structures as generalizations of the Kontsevich-Soibelman quantum Airy structures by allowing differential operators of arbitrary order (instead of only quadratic). We construct many classes of examples of higher quantum Airy structures as modules of $\mathcal{W}(\mathfrak{g})$ algebras at self-dual level, with $\mathfrak{g}= \mathfrak{gl}_{N+1}$, $\mathfrak{so}_{2 N }$ or $\mathfrak{e}_N$. We discuss their enumerative geometric meaning in the context of (open and closed) intersection theory of the moduli space of curves and its variants. Some of these $\mathcal{W}$ constraints have already appeared in the literature, but we find many new ones. For $\mathfrak{gl}_{N+1}$ our result hinges on the description of previously unnoticed Lie subalgebras of the algebra of modes. As a consequence, we obtain a simple characterization of the spectral curves (with arbitrary ramification) for which the Bouchard-Eynard topological recursion gives symmetric $\omega_{g,n}$s and is thus well defined. For all such cases, we show that the topological recursion is equivalent to $\mathcal{W}(\mathfrak{gl})$ constraints realized as higher quantum Airy structures, and obtain a Givental-like decomposition for the corresponding partition functions.

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  1. $q$-Deformed Topological Recursion: Quantum Curves and Non-perturbative Analysis

    math-ph 2026-08 conditional novelty 6.0 of 10

    A q-deformed topological recursion governs the non-perturbative amplitudes of q-difference matrix systems exactly when s=1 or r ≡ ±1 (mod s), with the admissible q-Casimir/shift configurations classified.

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