arXiv Analytics

Sign in

arXiv:1410.8710 [math-ph]AbstractReferencesReviewsResources

Low-Pass Filters, Fourier Series and Partial Differential Equations

Jorge L. deLyra

Published 2014-10-31Version 1

When Fourier series are used for applications in physics, involving partial differential equations, sometimes the process of resolution results in divergent series for some quantities. In this paper we argue that the use of linear low-pass filters is a valid way to regularize such divergent series. In particular, we show that these divergences are always the result of oversimplification in the proposition of the problems, and do not have any fundamental physical significance. We define the first-order linear low-pass filter in precise mathematical terms, establish some of its properties, and then use it to construct higher-order filters. We also show that the first-order linear low-pass filter, understood as a linear integral operator in the space of real functions, commutes with the second-derivative operator. This can greatly simplify the use of these filters in physics applications, and we give a few simple examples to illustrate this fact.

Comments: 30 pages, including 18 pages of appendices with explicit calculations and examples
Categories: math-ph, math.AP, math.MP
Related articles: Most relevant | Search more
arXiv:math-ph/0207023 (Published 2002-07-18)
A precise definition of reduction of partial differential equations
arXiv:math-ph/0702033 (Published 2007-02-09)
Nonlocal Symmetries and Generation of Solutions for Partial Differential Equations
arXiv:1403.7751 [math-ph] (Published 2014-03-30)
The method of dynamic projection operators in the theory of hyperbolic systems of partial differential equations with variable coefficients