On approximation of solutions of operator-differential equations with their entire solutions of exponential type

Authors

  • V. M. Gorbachuk National Technical University "KPI", 37 Peremogy Prosp., Kyiv, 06256, Ukraine

DOI:

Keywords:

Hilbert and Banach spaces, differential-operator equation, weak solution, $C_{0}$-semigroup of linear operators, entire vector-valued function, entire vector-valued function of exponential type, the best approximation, direct and inverse theorems of the approximation theory

Abstract

We consider an equation of the form $y'(t) + Ay(t) = 0, \ t \in [0, \infty)$, where $A$ is a nonnegative self-adjoint operator in a Hilbert space. We give direct and inverse theorems on approximation of solutions of this equation with its entire solutions of exponential type. This establishes a one-to-one correspondence between the order of convergence to $0$ of the best approximation of a solution and its smoothness degree. The results are illustrated with an example, where the operator $A$ is generated by a second order elliptic differential expression in the space $L_{2}(\Omega)$ (the domain $\Omega \subset \mathbb{R}^{n}$ is bounded with smooth boundary) and a certain boundary condition.

References

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Published

2016-09-25

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Articles

How to Cite

Gorbachuk, V. M. “On Approximation of Solutions of Operator-Differential Equations With Their Entire Solutions of Exponential Type”. Methods of Functional Analysis and Topology, vol. 22, no. 3, Sept. 2016, pp. 245-5, https://zen.imath.kiev.ua/index.php/mfat/article/view/639.