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Generalized Feynman Graph Expansions for Lévy-Driven Pseudo-Differential Evolution Equations

Iskander O. Hamdiken, Boubaker Smii

Source record

Source: arXiv

Published: Sep 30, 2026

arXiv: 2610.00512

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Source abstract

We study a class of Cauchy problems driven by pseudo-differential operators with Lévy-type symbols. We extend earlier results from exponential initial data to a broader set of initial conditions. We demonstrate the existence and uniqueness of the solution, which has an explicit convolution representation with the associated kernel. We then derive an asymptotic expansion of the solution, with coefficients expressed in terms of moments and, after taking logarithms, in terms of cumulants. These expansions are organized through generalized Feynman graph representations, providing a clear combinatorial description of both the solution and its logarithm. We also establish a Borel summability result under suitable conditions and recover the classical exponential case as a special instance. Finally, we illustrate the convolution kernel and solution through a one-dimensional Lévy-Gaussian example.

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Generalized Feynman Graph Expansions for Lévy-Driven Pseudo-Differential Evolution Equations — Mathematical Frontier Network