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Mixed Hodge Modules and Canonical Perverse Extensions for Multi-Node Conifold Degenerations

Published 7 Apr 2026 in math.AG and math.CT | (2604.05367v1)

Abstract: We study one-parameter conifold degenerations whose central fiber has finitely many ordinary double points and construct a mixed-Hodge-module refinement of the canonical corrected perverse object associated with the degeneration. We build a rank-one point-supported mixed-Hodge-module block at each node, identify the global singular quotient as $\bigoplus_{k=1}<sup>r</sup> i_{k*}\Q<sup>H_{{p_k}}(-1)$, and assemble these local blocks via Saito's divisor-case gluing formalism into a global object P<sup>H</sup>∈MHM(X0)\mathcal P<sup>H</sup> \in MHM(X_0). We prove that P<sup>H\mathcal P<sup>H realizes the corrected perverse object, fits into an exact sequence $0 \to IC<sup>H_{X_0}</sup> \to \mathcal P<sup>H</sup> \to \bigoplus_{k=1}<sup>r</sup> i_{k*}\Q<sup>H_{{p_k}}(-1)</sup> \to 0$, and that the same quotient realizes the finite local vanishing sector in the nearby-cycle formalism. We further relate the mixed-Hodge-module extension, its realized perverse extension, and the induced extension on hypercohomology carrying the limiting mixed Hodge structure. This gives a theorem-level Hodge-theoretic refinement of the corrected perverse extension in the finite multi-node ordinary double point setting.

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