RUS  ENG
Full version
JOURNALS // Izvestiya of Saratov University. Mathematics. Mechanics. Informatics // Archive

Izv. Saratov Univ. Math. Mech. Inform., 2021 Volume 21, Issue 2, Pages 162–172 (Mi isu883)

Scientific Part
Mathematics

About the convergence rate Hermite – Padé approximants of exponential functions

A. P. Starovoitov, E. P. Kechko

Francisk Skorina Gomel State University, 104 Sovetskaya St., Gomel 246019, Belarus

Abstract: This paper studies uniform convergence rate of Hermite – Padé approximants (simultaneous Padé approximants) $\{\pi^j_{n,\overrightarrow{m}}(z)\}_{j=1}^k$ for a system of exponential functions $\{e^{\lambda_jz}\}_{j=1}^k$, where $\{\lambda_j\}_{j=1}^k$ are different nonzero complex numbers. In the general case a research of the asymptotic properties of Hermite – Padé approximants is a rather complicated problem. This is due to the fact that in their study mainly asymptotic methods are used, in particular, the saddle-point method. An important phase in the application of this method is to find a special saddle contour (the Cauchy integral theorem allows to choose an integration contour rather arbitrarily), according to which integration should be carried out. Moreover, as a rule, one has to repy only on intuition. In this paper, we propose a new method to studying the asymptotic properties of Hermite – Padé approximants, that is based on the Taylor theorem and heuristic considerations underlying the Laplace and saddle-point methods, as well as on the multidimensional analogue of the Van Rossum identity that we obtained. The proved theorems complement and generalize the known results by other authors.

Key words: Hermite integrals, Hermite – Padé approximants, system of exponential functions, asymptotic equality, saddle-point method.

UDC: 517.538.52+517.538.53

Received: 03.01.2020
Revised: 14.05.2020

DOI: 10.18500/1816-9791-2021-21-2-162-172



Bibliographic databases:


© Steklov Math. Inst. of RAS, 2025