18 Orthogonal PolynomialsAskey Scheme

§18.20 Hahn Class: Explicit Representations

Contents
  1. §18.20(i) Rodrigues Formulas
  2. §18.20(ii) Hypergeometric Function and Generalized Hypergeometric Functions

§18.20(i) Rodrigues Formulas

For comments on the use of the forward-difference operator Δx, the backward-difference operator ∇x, and the central-difference operator δx, see §18.2(ii).

Hahn, Krawtchouk, Meixner, and Charlier

18.20.1 pn⁡(x)=1κn⁢wx⁢∇xn(wx⁢∏ℓ=0n−1F⁡(x+ℓ)),
x∈X.

In (18.20.1) X and wx are as in Table 18.19.1. For the Hahn polynomials pn⁡(x)=Qn⁡(x;α,β,N) and

18.20.2 F⁡(x) =(x+α+1)⁢(x−N),
κn =(−N)n⁢(α+1)n.

For the Krawtchouk, Meixner, and Charlier polynomials, F⁡(x) and κn are as in Table 18.20.1.

Table 18.20.1: Krawtchouk, Meixner, and Charlier OP’s: Rodrigues formulas (18.20.1).
pn⁡(x) F⁡(x) κn
Kn⁡(x;p,N) x−N (−N)n
Mn⁡(x;β,c) x+β (β)n
Cn⁡(x;a) 1 1

Continuous Hahn

18.20.3 w⁡(x;a,b,a¯,b¯)⁢pn⁡(x;a,b,a¯,b¯)=1n!⁢δxn⁡(w⁡(x;a+12⁢n,b+12⁢n,a¯+12⁢n,b¯+12⁢n)).

Meixner–Pollaczek

18.20.4 w(λ)⁡(x;ϕ)⁢Pn(λ)⁡(x;ϕ)=1n!⁢δxn⁡(w(λ+12⁢n)⁡(x;ϕ)).

§18.20(ii) Hypergeometric Function and Generalized Hypergeometric Functions

For the definition of hypergeometric and generalized hypergeometric functions see §16.2. Here we use as convention for (16.2.1) with bq=−N, a1=−n, and n=0,1,…,N that the summation on the right-hand side ends at k=n.

(For symmetry properties of pn⁡(x;a,b,a¯,b¯) with respect to a, b, a¯, b¯ see Andrews et al. (1999, Corollary 3.3.4).)