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Discrete Orthogonal Polynomials Asymptotics And Applications Jinho Baik Et Al

  • SKU: BELL-4130752
Discrete Orthogonal Polynomials Asymptotics And Applications Jinho Baik Et Al
$ 31.00 $ 45.00 (-31%)

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Discrete Orthogonal Polynomials Asymptotics And Applications Jinho Baik Et Al instant download after payment.

Publisher: Princeton University Press
File Extension: PDF
File size: 2.44 MB
Pages: 172
Author: Jinho Baik; et al
ISBN: 9780691127330, 9780691127347, 0691127336, 0691127344
Language: English
Year: 2007

Product desciption

Discrete Orthogonal Polynomials Asymptotics And Applications Jinho Baik Et Al by Jinho Baik; Et Al 9780691127330, 9780691127347, 0691127336, 0691127344 instant download after payment.

"This book describes the theory and applications of discrete orthogonal polynomials - polynomials that are orthogonal on a finite set. Unlike other books, Discrete Orthogonal Polynomials addresses completely general weight functions and presents a new methodology for handling the discrete weights case." "J. Baik, T. Kriecherbauer, K. T.-R. McLaughlin & P. D. Miller focus on asymptotic aspects of general, nonclassical discrete orthogonal polynomials and set out applications of current interest. Topics covered include the probability theory of discrete orthogonal polynomial ensembles and the continuum limit of the Toda lattice. The primary concern throughout is the asymptotic behavior of discrete orthogonal polynomials for general, nonclassical measures, in the joint limit where the degree increases as some fraction of the total number of points of collocation. The book formulates the orthogonality conditions defining these polynomials as a kind of Riemann-Hilbert problem and then generalizes the steepest descent method for such a problem to carry out the necessary asymptotic analysis."--BOOK JACKET. Read more... Asymptotics of General Discrete Orthogonal Polynomials in the Complex Plane -- Applications -- An Equivalent Riemann-Hilbert Problem -- Asymptotic Analysis -- Discrete Orthogonal Polynomials: Proofs of Theorems Stated in 2.3 -- Universality: Proofs of Theorems Stated in 3.3

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