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Meta Algebras and Biorthogonal Rational Functions: The Hahn Case (2405.05692v1)

Published 9 May 2024 in math-ph and math.MP

Abstract: The finite families of biorthogonal rational functions and orthogonal polynomials of Hahn type are interpreted algebraically in a unified way by considering the three-generated meta Hahn algebra and its finite-dimensional representations. The functions of interest arise as overlaps between eigensolutions of generalized and ordinary eigenvalue problems on the representation space. The orthogonality relations and bispectral properties naturally follow from the framework.

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References (19)
  1. The Askey–Wilson algebra and its avatars. Journal of Physics A: Mathematical and Theoretical, 54(6):063001, 2021.
  2. Jason Gaddis. Two-generated algebras and standard-form congruence. Communications in Algebra, 43(4):1668–1686, 2015.
  3. An algebraic description of the bispectrality of the biorthogonal rational functions of Hahn type. Proceedings of the American Mathematical Society, 149(2):715–728, 2021.
  4. A unified algebraic underpinning for the Hahn polynomials and rational functions. Journal of Mathematical Analysis and Applications, 497(1):124863, 2021.
  5. Paul Terwilliger. Introduction to Leonard pairs. Journal of Computational and Applied mathematics, 153(1-2):463–475, 2003.
  6. Alexei Zhedanov. Biorthogonal rational functions and the generalized eigenvalue problem. Journal of Approximation Theory, 101(2):303–329, 1999.
  7. Hypergeometric orthogonal polynomials. Springer, 2010.
  8. Special functions, volume 71. Cambridge university press Cambridge, 1999.
  9. Wilfrid Norman Bailey. Generalized hypergeometric series. Camrbridge University Press, 1935.
  10. Basic hypergeometric series, volume 96. Cambridge university press, 2011.
  11. Tom H Koornwinder. Charting the q-Askey scheme. II. The q-Zhedanov scheme. Indagationes Mathematicae, 34(2):317–337, 2023.
  12. Dualities in the q-askey scheme and degenerate daha. Studies in Applied Mathematics, 141(4):424–473, 2018.
  13. Marta Mazzocco. Confluences of the Painlevé equations, Cherednik algebras and q-Askey scheme. Nonlinearity, 29(9):2565, 2016.
  14. Mutual integrability, quadratic algebras, and dynamical symmetry. Annals of Physics, 217(1):1–20, 1992.
  15. Hypergeometric orthogonal polynomials with respect to Newtonian bases. SIGMA. Symmetry, Integrability and Geometry: Methods and Applications, 12:048, 2016.
  16. Jason D Gaddis. PBW deformations of Artin-Schelter regular algebras and their homogenizations. PhD thesis, The University of Wisconsin-Milwaukee, 2013.
  17. Natalia K Iyudu. Representation spaces of the Jordan plane. Communications in Algebra, 42(8):3507–3540, 2014.
  18. A parametric family of subalgebras of the Weyl algebra II. Irreducible modules. Recent developments in algebraic and combinatorial aspects of representation theory, 602:73–98, 2013.
  19. Bispectrality and biorthogonality of the rational functions of q-Hahn type. Journal of Mathematical Analysis and Applications, 516(1):126443, 2022.
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