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JOURNALS // Zhurnal Matematicheskoi Fiziki, Analiza, Geometrii [Journal of Mathematical Physics, Analysis, Geometry] // Archive

Zh. Mat. Fiz. Anal. Geom., 2019 Volume 15, Number 2, Pages 170–191 (Mi jmag721)

This article is cited in 14 papers

Analog of Hayman's theorem and its application to some system of linear partial differential equations

Andriy Banduraa, Oleh Skaskivb

a Ivano-Frankivsk National Technical University of Oil and Gas, 15 Karpatska Str., Ivano-Frankivsk, 76019, Ukraine
b Ivan Franko National University of Lviv, 1 Universytetska Str., Lviv, 79000, Ukraine

Abstract: We used the analog of known Hayman's theorem to study the boundedness of $\mathbf{L}$-index in joint variables of entire solutions of some linear higher-order systems of PDE's and found sufficient conditions providing the boundedness, where $\mathbf{L}(z)=(l_1(z), \ldots, l_{n}(z)),$ $l_j:\mathbb{C}^n\to \mathbb{R}_+$ is a continuous function $j\in\{1,\ldots,n\}.$ Growth estimates of these solutions are also obtained. We proposed the examples of systems of PDE's which prove the exactness of these estimates for entire solutions. The obtained results are new even for the one-dimensional case because of the weakened restrictions imposed on the positive continuous function $l.$

Key words and phrases: entire function, bounded $\mathbf{L}$-index in joint variables, linear higher-order systems of PDE, analytic theory of PDE, entire solution, linear higher-order differential equation.

MSC: 32W50, 32A15, 32A22, 35G35, 32A40.

Received: 28.10.2017
Revised: 06.11.2017

Language: English

DOI: 10.15407/mag15.02.170



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