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Quantum cohomology, Hitchin systems, and Fourier--Mukai comparison

Yunfeng Jiang, Hsian-Hua Tseng

Source record

Source: arXiv

Published: Oct 2, 2026

arXiv: 2610.03520

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Source abstract

Let XX be the moduli space of stable trace-free rank rr Higgs bundles over a smooth projective curve CC with fixed determinant $Λ\in\Pic(C)$ and gcd⁡(r,deg⁡Λ)=1\gcd(r,\degΛ)=1. We prove that the $\cc^*$-equivariant quantum product of a divisor on XX is given by the Steinberg correspondence of the Lagrangian Steinberg cycle in X×XX\times X. The Steinberg cycle is the image of the reduced virtual fundamental cycle of the 22-pointed Kontsevich stable map space to XX under evaluation map. For $Γ=\Pic^0(C)[r]$, we give a character decomposition for ΓΓ-invariant curve classes or finite orbit sums. In rank two and genus two we explicitly determine its fifteen endoscopic lines and the reduced spectral discriminant. %The resulting endoscopic support statement is cohomological, not a determination of the entire Chow cycle. For X^=[X/Γ]\widehat X=[X/Γ], which is the moduli space of stable $\PGL_r$-Higgs bundles over CC. We consider the orbifold quantum cohomology theory from a gerbe-twisted theory. The complex K-theory $\KU^*(X)$ and twisted K-theory $\KU^*([X/Γ],α)$ by the lifting μrμ_r-gerbe αα of the universal projective bundle is an isomorphism, and is given by the Fourier-Mukai transformation. We prove that the Fourier-Mukai transformation is compatible with the quantum product by the divisors.

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