Handling some Diophantine equation via Euclidean algorithm and its application to purely exponential equations
Abstract
In this paper, we use a variety of classical and new research methods for ternary exponential Diophantine equations and extensive use of computer calculations to study the conjecture of R. Scott and R. Styer which asserts that for any fixed relatively prime positive integers and all greater than 1 there is at most one solution to the equation in positive integers and , except for listed specific cases. Precisely, we confirm that for any fixed prime of the form with some positive integer the conjecture holds true, except for finitely many cases all of which can be effectively determined. Most importantly we prove the conjecture to be true whenever , or , giving another proof of the result of T. Miyazaki and I. Pink for . We also contribute to the estimation of the number of positive integer solutions to the equation for any fixed positive integers and with both and greater than 1. Further, based on a key idea in the proofs of the above results, we present a new application of the Euclidean algorithm for polynomials to the polynomial-exponential Diophantine equation in positive integers and , where and are given positive integers with , and is a given prime.
Cite
@article{arxiv.2604.18991,
title = {Handling some Diophantine equation via Euclidean algorithm and its application to purely exponential equations},
author = {Takafumi Miyazaki and Reese Scott and Robert Styer},
journal= {arXiv preprint arXiv:2604.18991},
year = {2026}
}
Comments
any comments are welcome!!