The proof characterizes Kronecker-universal self-conjugate partitions using Saxl's conjecture and staircase minimality.
Saxl's conjecture (2012) asserts that for the staircase partition ρₖ = (k, k-1, …, 1), the tensor square of the corresponding irreducible representation of the symmetric group STₖ contains every irreducible representation as a constituent, where Tₖ = k(k+1)/2 is the kth triangular number. We prove this conjecture unconditionally. Our proof introduces the Staircase Minimality Theorem: among all 2-regular partitions of Tₖ, the staircase ρₖ is the unique dominance-minimal element. Combined with Ikenmeyer's theorem on dominance and Kronecker positivity for staircases, this establishes that every 2-regular partition appears in the tensor square. Modular saturation then follows using only the diagonal entries dμμ = 1 of the decomposition matrix, and the Bessenrodt--Bowman--Sutton lifting theorem completes the proof. We further prove that at triangular numbers, staircases are the only Kronecker-universal self-conjugate partitions, providing a complete characterization.
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Soong Kyum Lee (2025) studied this question.
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