Discrete fractional Radon transforms and quadratic forms
Abstract
We consider discrete analogues of fractional Radon transforms involving integration over paraboloids defined by positive definite quadratic forms. We prove that such discrete operators extend to bounded operators from to for a certain family of kernels. The method involves an intricate spectral decomposition according to major and minor arcs, motivated by ideas from the circle method of Hardy and Littlewood. Techniques from harmonic analysis, in particular Fourier transform methods and oscillatory integrals, as well as the number theoretic structure of quadratic forms, exponential sums, and theta functions, play key roles in the proof.
Cite
@article{arxiv.1005.4049,
title = {Discrete fractional Radon transforms and quadratic forms},
author = {Lillian B. Pierce},
journal= {arXiv preprint arXiv:1005.4049},
year = {2019}
}
Comments
The statements of Propositions 3, 6, 7, and Theorem 1 have been corrected, and Corollary 1.1 has been added