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Hardy-Littlewood maximal operators on trees with bounded geometry

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abstract

In this paper we study the $L^p$ boundedness of the centred and the uncentred Hardy--Littlewood maximal operators on the class $\Upsilon_{a,b}$, $2\leq a\leq b$, of trees with $(a,b)$-bounded geometry. We find the sharp range of $p$, depending on $a$ and $b$, where the centred maximal operator is bounded on $L^p(\mathfrak T)$ for all $\mathfrak T$ in $\Upsilon_{a,b}$. We show that there exists a tree in $\Upsilon_{a,b}$ for which the uncentred maximal function is bounded on $L^p$ if and only if $p=\infty$. We also extend these results to graphs which are strictly roughly isometric, in the sense of Kanai, to trees in the class $\Upsilon_{a,b}$.

fields

math.DS 1

years

2025 1

verdicts

CONDITIONAL 1

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  • Hardy-Littlewood maximal operator on spaces of exponential volume growth math.DS · 2025-05-12 · conditional · none · ref 525 · internal anchor

    Under new 'rough radial structure' assumptions, ball averages on exponentially growing groups satisfy weak-type L(logL)^c maximal inequalities, and non-elementary hyperbolic groups satisfy the optimal weak-type (1,1) inequality.