AbstractDivergent series of Dirac delta functions have been used in the solution of ordinary and functional differential equations. Such divergent series also form the basic block in the asymptotic expansion of generalized functions. In this article we combine these two ideas and show that the series of deltas arising as solutions of ordinary differential equations can be realized as the asymptotics of distributional solutions of certain associated equations
The "deltafunction" was invented by P. A. M. Dirac around 1930 in order to compactly expre...
The "deltafunction" was invented by P. A. M. Dirac around 1930 in order to compactly expre...
One of the most general methods for solving ordinary differential equations consists in obtaining a ...
AbstractDivergent series of Dirac delta functions have been used in the solution of ordinary and fun...
Divergent series of Dirac delta functions have been used in the solution of ordinary and functional ...
AbstractWe present the distributional solutions to the hypergeometric differential equation. These s...
AbstractDistributional solutions for certain classes of ordinary differential and functional differe...
Abstract A differential equation is a relationship between a function and its deriva-tives which are...
Abstract. Mathematical justifications are given for several integral and series representations of t...
AbstractNecessary and sufficient conditions are discovered for the simultaneous existence of solutio...
AbstractWe apply regularization of divergent integrals in the derivation of the asymptotic expansion...
We apply regularization of divergent integrals in the derivation of the asymptotic expansion of cert...
Dirac delta functions are introduced to students of signal processing in their sophomore year. Quite...
Abstract: We consider an ordinary differential equation of a very general form. We show h...
AbstractNecessary and sufficient conditions are discovered for the simultaneous existence of solutio...
The "deltafunction" was invented by P. A. M. Dirac around 1930 in order to compactly expre...
The "deltafunction" was invented by P. A. M. Dirac around 1930 in order to compactly expre...
One of the most general methods for solving ordinary differential equations consists in obtaining a ...
AbstractDivergent series of Dirac delta functions have been used in the solution of ordinary and fun...
Divergent series of Dirac delta functions have been used in the solution of ordinary and functional ...
AbstractWe present the distributional solutions to the hypergeometric differential equation. These s...
AbstractDistributional solutions for certain classes of ordinary differential and functional differe...
Abstract A differential equation is a relationship between a function and its deriva-tives which are...
Abstract. Mathematical justifications are given for several integral and series representations of t...
AbstractNecessary and sufficient conditions are discovered for the simultaneous existence of solutio...
AbstractWe apply regularization of divergent integrals in the derivation of the asymptotic expansion...
We apply regularization of divergent integrals in the derivation of the asymptotic expansion of cert...
Dirac delta functions are introduced to students of signal processing in their sophomore year. Quite...
Abstract: We consider an ordinary differential equation of a very general form. We show h...
AbstractNecessary and sufficient conditions are discovered for the simultaneous existence of solutio...
The "deltafunction" was invented by P. A. M. Dirac around 1930 in order to compactly expre...
The "deltafunction" was invented by P. A. M. Dirac around 1930 in order to compactly expre...
One of the most general methods for solving ordinary differential equations consists in obtaining a ...