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The canonical symmetry reduction of string backgrounds

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abstract

String backgrounds, defined here as metric connections with skew-symmetric torsion and reduced holonomy, yield generalized Ricci solitons relative to the Lee vector field. By a variational argument using the string action, they are also gradient generalized Ricci solitons relative to a potential function. These two observations combine to yield a canonical symmetry, and in this work we derive fundamental features of the transverse geometry, and rigidity phenomena. We prove in a unified conceptual fashion that the transverse geometry satisfies the string generalized Ricci soliton equations (a simplified Hull-Strominger system) in many settings including almost Hermitian, almost contact, $SU(3)$, $G_2$, and $\mathrm{Spin}(7)$ geometry. We also show that the transverse geometry is always conformally co-closed, with the conformal factor given by the associated soliton potential.

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2026 1

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Sasaki with torsion manifolds and string backgrounds

math.DG · 2026-08-09 · conditional · novelty 7.0

The authors characterize co-Kähler-like and flat Sasaki-with-torsion manifolds, classify compact 5-dimensional ∇-Einstein manifolds, and prove gauge equivalence of their new strong flow to generalized Ricci flow.

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  • Sasaki with torsion manifolds and string backgrounds math.DG · 2026-08-09 · conditional · none · ref 35 · internal anchor

    The authors characterize co-Kähler-like and flat Sasaki-with-torsion manifolds, classify compact 5-dimensional ∇-Einstein manifolds, and prove gauge equivalence of their new strong flow to generalized Ricci flow.