English

On orthogonal polynomials with respect to a class of differential operators

Classical Analysis and ODEs 2022-11-01 v1

Abstract

We consider orthogonal polynomials with respect to a linear differential operator L(M)=k=0Mρk(z)dkdzk,\mathcal{L}^{(M)}=\sum_{k=0}^{M}\rho_{k}(z)\frac{d^k}{dz^k}, where {ρk}k=0M\{\rho_k\}_{k=0}^{M} are complex polynomials such that deg[ρk]k,0kMdeg[\rho_k]\leq k, 0\leq k \leq M, with equality for at least one index. We analyze the uniqueness and zero location of these polynomials. An interesting phenomenon occurring in this kind of orthogonality is the existence of operators for which the associated sequence of orthogonal polynomials reduces to a finite set. For a given operator, we find a classification of the measures for which it is possible to guarantee the existence of an infinite sequence of orthogonal polynomials, in terms of a linear system of difference equations with varying coefficients. Also, for the case of a first-order differential operator, we locate the zeros and establish the strong asymptotic behavior of these polynomials.

Keywords

Cite

@article{arxiv.2210.16605,
  title  = {On orthogonal polynomials with respect to a class of differential operators},
  author = {Jorge A. Borrego-Morell},
  journal= {arXiv preprint arXiv:2210.16605},
  year   = {2022}
}