The Modular Energy Function: Exact Identities and a Primality Equivalence

Fuente: arXiv
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Main Author: En-naoui, Es-said
Format: Preprint
Published: 2025
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author En-naoui, Es-said
author_facet En-naoui, Es-said
contents We introduce and study the arithmetic function E_m(n), defined as the sum of the remainders of n when divided by the first m positive integers. Although the definition is elementary, the function encodes rich arithmetic structure. In this first part we develop exact algebraic and combinatorial identities, including floor-sum and divisor-sum reformulations, quotient-residue decompositions, sharp bounds and extremal classes, and symmetry relations. We also establish a diagonal identity linking E_n(n) to the classical sum of divisors function, which leads to an exact equivalence characterizing primality in terms of differences of modular energy values. Additional results include congruence decompositions, recursion formulas, and structural properties when n<m, n>m, or when n or m is prime. These identities form the foundation for a second part, where analytic and asymptotic properties will be investigated.
format Preprint
id arxiv_https___arxiv_org_abs_2509_10592
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The Modular Energy Function: Exact Identities and a Primality Equivalence
En-naoui, Es-said
General Mathematics
11A25, 11N37, 11B75
G.2.1; F.2.2
We introduce and study the arithmetic function E_m(n), defined as the sum of the remainders of n when divided by the first m positive integers. Although the definition is elementary, the function encodes rich arithmetic structure. In this first part we develop exact algebraic and combinatorial identities, including floor-sum and divisor-sum reformulations, quotient-residue decompositions, sharp bounds and extremal classes, and symmetry relations. We also establish a diagonal identity linking E_n(n) to the classical sum of divisors function, which leads to an exact equivalence characterizing primality in terms of differences of modular energy values. Additional results include congruence decompositions, recursion formulas, and structural properties when n<m, n>m, or when n or m is prime. These identities form the foundation for a second part, where analytic and asymptotic properties will be investigated.
title The Modular Energy Function: Exact Identities and a Primality Equivalence
topic General Mathematics
11A25, 11N37, 11B75
G.2.1; F.2.2
url https://arxiv.org/abs/2509.10592