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The 27th International Conference on Finite and Infinite Dimensional Complex Analysis and Applications
August 12, 2019 15:30–16:30, Section I, Krasnoyarsk, Siberian Federal University
 


Locally explicit version of Fundamental Principle for homogeneous convolution equations

A. Vidras

University of Cyprus
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Abstract: Using a weighted Koppelman integral representation formula with a complex parameter a division formula in the space of weighted entire function is proved. This formula is used to derive a locally explicit version of Ehrenpreis's Fundamental Principle for a system of homogeneous convolution equations $\check{f}\ast \mu_j=0$, $j=1,\dots, m$, $f \in \mathcal{E}(\mathbb R^n)$, $\mu_j\in\mathcal{E}^{\prime}(\mathbb R^n)$, when the Fourier Transforms $\hat{\mu}_j$, $j=1,\dots, m$ are slowly decreasing and form a complete intersection in $\mathbb C^n$.

Language: English
 
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