On the Carmichael rings, Carmichael ideals and Carmichael polynomials
Number Theory
2019-05-10 v2 Commutative Algebra
Rings and Algebras
Abstract
Motivated by Carmichael numbers, we say that a finite ring is a Carmichael ring if for any . We then call an ideal of a ring as a Carmichael ideal if is a Carmichael ring, and a Carmichael element of means it generates a Carmichael ideal. In this paper, we determine the structure of Carmichael rings and prove a generalization of Korselt's criterion for Carmichael ideals in Dedekind domains. We also study Carmichael elements of polynomial rings over finite fields (called Carmichael polynomials) by generalizing various classical results. For example, we show that there are infinitely many Carmichael polynomials but they have zero density.
Cite
@article{arxiv.1809.05432,
title = {On the Carmichael rings, Carmichael ideals and Carmichael polynomials},
author = {Sunghan Bae and Su Hu and Min Sha},
journal= {arXiv preprint arXiv:1809.05432},
year = {2019}
}
Comments
21 pages