This paper refines the Concha-Lapointe identity for partially symmetric macdonald polynomials, demonstrating its equivalence to a key Kazhdan-Lusztig property.
A well-known and fundamental property of the Macdonald polynomials P_λ(x;q,t) is their invariance under the transformation sending $(q,t)$ to (q⁻¹,t⁻¹). Recently, Concha and Lapointe showed that this property extends in an interesting, nontrivial way to an identity for partially symmetric Macdonald polynomials. Their identity played a key role in the work of Bechtloff Weising and Orr linking partially symmetric Macdonald polynomials to parabolic flag Hilbert schemes. In this paper, we refine the Concha-Lapointe identity to a sub-family of Alexandersson's permuted basement Macdonald polynomials and give a combinatorial proof of the refined identity. We show also that the Concha-Lapointe identity is equivalent to the assertion that (normalized) partially symmetric Macdonald polynomials are fixed under the Kazhdan-Lusztig involution.
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Orr et al. (2025) studied this question.
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