Maximal convergence theorems for functions of squared modulus holomorphic type and various applications

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Date
2006
Volume
1175
Issue
Journal
Series Titel
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Publisher
Berlin : Weierstraß-Institut für Angewandte Analysis und Stochastik
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Abstract

In this paper we extend the theory of maximal convergence introduced by Walsh to functions of squared modulus holomorphic type. We introduce in accordance to the well-known complex maximal convergence number for holomorphic functions a real maximal convergence number for functions of squared modulus holomorphic type and prove several maximal convergence theorems. We achieve that the real maximal convergence number for F is always greater or equal than the complex maximal convergence number for g and equality occurs if L is a closed disk in R^2. Among other various applications of the resulting approximation estimates we show that for functions F of squared holomorphic type which have no zeros in a closed disk B_r the relation limsupntoinftysqrt[n]En(Br,F)=limsupntoinftysqrt[n]En(partialBr,F) is valid, where E_n is the polynomial approximation error.

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Keywords
Polynomial approximation in 2–space, Maximal convergence, Bernstein-Walsh’s type theorems, real-analytic functions
Citation
Kraus, C. (2006). Maximal convergence theorems for functions of squared modulus holomorphic type and various applications (Vol. 1175). Berlin : Weierstraß-Institut für Angewandte Analysis und Stochastik.
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