Abstract
AbstractWe present a formula that expresses the Hankel determinants of a linear combination of length $$d+1$$
d
+
1
of moments of orthogonal polynomials in terms of a $$d\times d$$
d
×
d
determinant of the orthogonal polynomials. This formula exists somehow hidden in the folklore of the theory of orthogonal polynomials but deserves to be better known, and be presented correctly and with full proof. We present four fundamentally different proofs, one that uses classical formulae from the theory of orthogonal polynomials, one that uses a vanishing argument and is due to Elouafi (J Math Anal Appl 431:1253–1274, 2015) (but given in an incomplete form there), one that is inspired by random matrix theory and is due to Brézin and Hikami (Commun Math Phys 214:111–135, 2000), and one that uses (Dodgson) condensation. We give two applications of the formula. In the first application, we explain how to compute such Hankel determinants in a singular case. The second application concerns the linear recurrence of such Hankel determinants for a certain class of moments that covers numerous classical combinatorial sequences, including Catalan numbers, Motzkin numbers, central binomial coefficients, central trinomial coefficients, central Delannoy numbers, Schröder numbers, Riordan numbers, and Fine numbers.
Publisher
Springer Science and Business Media LLC
Subject
Algebra and Number Theory
Reference15 articles.
1. Baik, J., Deift, P., Strahov, E.: Products and ratios of characteristic polynomials of random Hermitian matrices. J. Math. Phys. 44, 3657–3670 (2003)
2. Brézin, E., Hikami, S.: Characteristic polynomials of random matrices. Commun. Math. Phys. 214, 111–135 (2000)
3. Christoffel, E.B.: Über die Gaußische Quadratur und eine Verallgemeinerung derselben. J. Reine Angew. Math. 55, 61–82 (1858)
4. Cigler, J., Krattenthaler, C.: Hankel determinants of linear combinations of moments of orthogonal polynomials. Int. J. Numb. Theory 17, 341–369 (2021)
5. Dougherty, M., French, C., Saderholm, B., Qian, W.: Hankel transforms of linear combinations of Catalan numbers. J. Integer Seq. 14 (2011), Article 11.5.1, 20 pp