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Sato-Tate distribution of p-adic hypergeometric functions
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AbstractRecently Ono, Saad and the second author [21] initiated a study of value distribution of certain families of Gaussian hypergeometric functions over large finite fields. They investigated two families of Gaussian hypergeometric functions and showed that they satisfy semicircular and Batman distributions. Motivated by their results we aim to study distributions of certain families of hypergeometric functions in the p-adic setting over large finite fields. In particular, we consider two and six parameters families of hypergeometric functions in the p-adic setting and obtain that their limiting distributions are semicircular over large finite fields. In the process of doing this we also express the traces of pth Hecke operators acting on the spaces of cusp forms of even weight $$k\ge 4$$
k
≥
4
and levels 4 and 8 in terms of p-adic hypergeometric function which is of independent interest. These results can be viewed as p-adic analogous of some trace formulas of [1, 2, 6].
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Title: Sato-Tate distribution of p-adic hypergeometric functions
Description:
AbstractRecently Ono, Saad and the second author [21] initiated a study of value distribution of certain families of Gaussian hypergeometric functions over large finite fields.
They investigated two families of Gaussian hypergeometric functions and showed that they satisfy semicircular and Batman distributions.
Motivated by their results we aim to study distributions of certain families of hypergeometric functions in the p-adic setting over large finite fields.
In particular, we consider two and six parameters families of hypergeometric functions in the p-adic setting and obtain that their limiting distributions are semicircular over large finite fields.
In the process of doing this we also express the traces of pth Hecke operators acting on the spaces of cusp forms of even weight $$k\ge 4$$
k
≥
4
and levels 4 and 8 in terms of p-adic hypergeometric function which is of independent interest.
These results can be viewed as p-adic analogous of some trace formulas of [1, 2, 6].
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