Skip to Main Content

Transactions of the American Mathematical Society

Published by the American Mathematical Society since 1900, Transactions of the American Mathematical Society is devoted to longer research articles in all areas of pure and applied mathematics.

ISSN 1088-6850 (online) ISSN 0002-9947 (print)

The 2020 MCQ for Transactions of the American Mathematical Society is 1.48.

What is MCQ? The Mathematical Citation Quotient (MCQ) measures journal impact by looking at citations over a five-year period. Subscribers to MathSciNet may click through for more detailed information.

 

Interpolation and uniqueness results for entire functions
HTML articles powered by AMS MathViewer

by James D. Child PDF
Trans. Amer. Math. Soc. 209 (1975), 199-209 Request permission

Abstract:

Let $K[\Omega ]$ denote the collection of entire functions of exponential type whose Borel transforms are analytic on ${\Omega ^c}$ (the complement of the simply connected domain taken relative to the sphere). Let $f$ be in $K[\Omega ]$ and set ${L_n}(f) = {(2\pi i)^{ - 1}}\smallint \Gamma {g_n}(\lambda )F(\lambda )d\lambda (n = 0,1, \ldots )$ where $F$ is the Borel transform of $f,\Gamma \subset \Omega$ is a simple closed contour chosen so that $F$ is analytic outside and on $\Gamma$ and each ${g_n}$ is in $H(\Omega )$ (the collection of functions analytic on $\Omega$). In what follows read ’the sequence of linear functionals $\{ {L_n}(f)\}$’ wherever the sequence of functions ’$\{ {g_n}\}$’ appears. Let $T$ denote a continuous linear operator from $H(\Omega )$ to $H(\Lambda )$ where $\Lambda$ is also a simply connected domain. The topologies on $H(\Omega )$ and $H(\Lambda )$ are those of uniform convergence on compact subsets of $\Omega$ (resp. $\Lambda$). The purpose of this paper is to consider uniqueness preserving operators, i.e., operators $T$ which have the property that $K[\Lambda ]$ is a uniqueness class for $\{ T({g_n})\}$ whenever $K[\Omega ]$ is a uniqueness class for $\{ {g_n}\}$, and to examine interpolation preserving operators, i.e., operators $T$ which have the property that $K[\Lambda ]$ interpolates the sequence of complex numbers $\{ {b_n}\}$ relative to $\{ T({g_n})\}$ whenever $K[\Omega ]$ interpolates $\{ {b_n}\}$ relatives to $\{ {g_n}\}$. Once some classes of uniqueness preserving operators and some classes of interpolation preserving operators have been found, we proceed to obtain new uniqueness and interpolation results from our knowledge of these operators and from previously known uniqueness and interpolation results. Operators which multiply by analytic functions and some differential operators are considered. Composition operators are studied and the results are used to extend the interpolation results for sequences of functions of the form $\{ {[W(\zeta )]^n}\}$ where $W$ is analytic and univalent on a simply connected domain.
References
Similar Articles
  • Retrieve articles in Transactions of the American Mathematical Society with MSC: 30A80
  • Retrieve articles in all journals with MSC: 30A80
Additional Information
  • © Copyright 1975 American Mathematical Society
  • Journal: Trans. Amer. Math. Soc. 209 (1975), 199-209
  • MSC: Primary 30A80
  • DOI: https://doi.org/10.1090/S0002-9947-1975-0387601-4
  • MathSciNet review: 0387601