ABSTRACT It is conjectured that for any fixed relatively prime positive integers a, b and c all greater than 1 there is at most one solution to the equation aˣ+bʸ=cᶻ in positive integers x, y and z, except for specific cases. In this paper, we prove that for any fixed c there is at most one solution to the equation, except for only finitely many cases. This is regarded as a three-variable generalization of the result of Miyazaki and Pink T. Miyazaki and I. Pink, Number of solutions to a special type of unit equations in two unknowns, III, Math. Proc. Cambridge Philos. Soc. 179 (2025), no. 3, 737–784 which asserts that for any fixed positive integer a there are only finitely many pairs of coprime positive integers b and c with b1 such that the Pillai’s type equation aˣ-bʸ=c has more than one solution in positive integers x and y. The proof of our result is based on a certain p-adic idea of Miyazaki and Pink and relies on many deep theorems on the theory of Diophantine approximation, and it also includes the complete description of solutions to some interesting system of simultaneous polynomial-exponential equations. We also discuss how effectively exceptional cases on our result for each c can be determined.
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Maohua Le
Takafumi Miyazaki
The Quarterly Journal of Mathematics
Gunma University
Kiryu University
Lingnan Normal University
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Le et al. (Thu,) studied this question.
www.synapsesocial.com/papers/69a75b4fc6e9836116a226af — DOI: https://doi.org/10.1093/qmath/haaf050
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