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On effective mean-values of arithmetic functions

Gérald Tenenbaum

Abstract

Let $r,\,f$ be multiplicative functions with $r\geqslant 0$, $f$ is complex valued, $|f|\leqslant r$, and $r$ satisfies some standard growth hypotheses. Let $x$ be large, and assume that, for some real number $τ$, the quantities $r(p)-\Re\{f(p)/p^{iτ}\}$ are small in various appropriate average senses over the set of prime numbers not exceeding $x$. We derive from recent effective mean-value estimates an effective comparison theorem between the mean-values of $f$ and of $r$ on the set of integers $\leqslant x$. We also provide effective estimates for certain weighted moments of additive functions and for sifted mean-values of non-negative multiplicative functions.

On effective mean-values of arithmetic functions

Abstract

Let be multiplicative functions with , is complex valued, , and satisfies some standard growth hypotheses. Let be large, and assume that, for some real number , the quantities are small in various appropriate average senses over the set of prime numbers not exceeding . We derive from recent effective mean-value estimates an effective comparison theorem between the mean-values of and of on the set of integers . We also provide effective estimates for certain weighted moments of additive functions and for sifted mean-values of non-negative multiplicative functions.

Paper Structure

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