Rank of Projection-Algebraic Representations of Some Differential Operators
Classical Analysis and ODEs
2010-11-17 v1 Numerical Analysis
Abstract
The Lie-algebraic method approximates differential operators that are formal polynomials of {1,x,d/dx} by linear operators acting on a finite dimensional space of polynomials. In this paper we prove that the rank of the n-dimensional representation of the operator K=a_k d^k/dx^k+a_{k+1} d^{k+1}/dx^{k+1}+... +a_{k+p} d^{k+p}/dx^{k+p} is n-k and conclude that the Lie-algebraic reductions of differential equations allow to approximate only some of solutions of the differential equation K[u]=f. We show how to circumvent this obstacle when solving boundary value problems by making an appropriate change of variables. We generalize our results to the case of several dimensions and illustrate them with numerical tests.
Keywords
Cite
@article{arxiv.1011.3782,
title = {Rank of Projection-Algebraic Representations of Some Differential Operators},
author = {Oksana Bihun and Mykola Prytula},
journal= {arXiv preprint arXiv:1011.3782},
year = {2010}
}
Comments
19 pages, 1 figure