2024/07/12 by Neelam Kandhil, Alessandro Languasco, Kandhil, Neelam +7
Computer Science · Mathematics · #11N37 #11R18 #11R29 #11R47 #11Y60 #Analytic Number Theory Research #Coding theory and cryptography #FOS: Mathematics #Number Theory (math.NT) #Polynomial and algebraic computation
paper · pdf · doi:10.48550/arxiv.2407.09113
openalex publication_date 2024/07/12 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/28
The Euler--Kronecker constant of a number field K is the ratio of the constant and the residue of the Laurent series of the Dedekind zeta function ζK(s) at s=1. We study the distribution of the Euler--Kronecker constant γq+ of the maximal real subfield of \mathbb Q(ζq) as q ranges over the primes. Further, we consider the distribution of γq+-γq, with γq the Euler--Kronecker constant of \mathbb Q(ζq) and show how it is connected with Kummer's conjecture, which predicts the asymptotic growth of the relative class number of \mathbb Q(ζq). We improve, for example, the known results on the bounds on average for the Kummer ratio and we prove analogous sharp bounds for γq+-γq. The methods employed are partly inspired by those used by Granville (1990) and Croot and Granville (2002) to investigate Kummer's conjecture. We supplement our theoretical findings with numerical illustrations to reinforce our conclusions.