Deformations of Kähler and Balanced Hyperbolicity
Jixiang Fu, Jingcao Wu
Source abstract
We study the deformation stability of Kähler and balanced hyperbolicity. Balanced hyperbolicity is not open in general: in every complex dimension we construct a one-parameter family with balanced hyperbolic central fibre and non-balanced nearby fibres. For positive results, we develop three complementary mechanisms. A finite-dimensional moving-intersection framework tracks -bounded de Rham classes through moving pure-type loci; its Aeppli and Dolbeault realizations yield continuation, transversality, and positivity criteria for balanced and Kähler hyperbolicity. A topological mechanism combines the graded-ideal property of hyperbolic cohomology with the hard Lefschetz theorem to obtain saturation and higher-power propagation results. Finally, on the universal cover, we reduce the passage from a bounded -potential to a bounded -primitive to a single bounded top-row -equation, and package the dependence on the potential into a canonical quotient obstruction. Together, these viewpoints yield a range of deformation stability results.
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