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arXiv · 2609.11072

Rational Approximations for Reciprocals of Multiple Zeta Values and Trivariate Cauchy Numbers

Abstract

In this paper, we will study a trivariate extension of the Cauchy numbers of both the first kind (also called Gregory coefficients) and the second kind (also called Nörlund numbers) via the Laurent expansion of the reciprocal of any positive integer power (which is called the order) of multiple polylogarithms. In the case of logarithm, we will show by the WZ method that for each order $\ell>1$ some Gregory coefficient of order $\ell$ must vanish, in contrast to the fact that all classical Gregory coefficients are nonzero. We also prove in this higher order logarithm case that the sequence is eventually alternating for each fixed order, a property enjoyed by the classical Gregory coefficients. In the most general setting, we conjecture that these new sequences are all eventually positive, which is supported by strong numerical evidence. Finally, we confirm this conjecture in the special case of polylogarithms and double polylogarithms. As a by product, for each zeta value and double zeta value, we find an infinite family of identities expressing its reciprocal as a sum of a rational number and an improper integral.

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BibTeXRIS

Ce Xu, Jianqiang Zhao. 2026-09-10. Rational Approximations for Reciprocals of Multiple Zeta Values and Trivariate Cauchy Numbers. https://arxiv.org/abs/2609.11072

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