Counting integral points on symmetric varieties with applications to arithmetic statistics
Abstract
In this article, we combine Bhargava's geometry-of-numbers methods with the dynamical point-counting methods of Eskin--McMullen and Benoist--Oh to develop a new technique for counting integral points on symmetric varieties lying within fundamental domains for coregular representations. As applications, we study the distribution of the -torsion subgroup of the class group in thin families of cubic number fields, as well as the distribution of the -Selmer groups in thin families of elliptic curves over . For example, our results suggest that the existence of a generator of the ring of integers with small norm has an increasing effect on the average size of the -torsion subgroup of the class group, relative to the Cohen--Lenstra predictions.
Cite
@article{arxiv.2304.01050,
title = {Counting integral points on symmetric varieties with applications to arithmetic statistics},
author = {Arul Shankar and Artane Siad and Ashvin A. Swaminathan},
journal= {arXiv preprint arXiv:2304.01050},
year = {2025}
}
Comments
44 pages, final version, to appear in Proceedings of the London Mathematical Society