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Maximal functions associated to flat plane curves with Mitigating factors (1609.08140v2)

Published 26 Sep 2016 in math.CA

Abstract: We study the boundedness problem for maximal operators $\mathbb{M}{\sigma}$ associated to flat plane curves with Mitigating factors, defined by $$\mathbb{M}{\sigma}f(x) \, := \, \sup_{1 \leq t \leq 2} \left|\int_{0}{1} f(x-t\Gamma(s)) \, (\kappa(s)){\sigma} \, ds\right|,$$ where $\kappa(s)$ denotes the curvature of the curve $\Gamma(s)=(s, g(s)+1), ~g(s) \in C5[0,1]$ in $\mathbb{R}2$. Let $\triangle$ be the closed triangle with vertices $P=(\frac{2}{5}, \frac{1}{5}), ~ Q=(\frac{1}{2}, \frac{1}{2}), ~ R=(0, 0).$ In this paper, we prove that for $ (\frac{1}{p}, \frac{1}{q}) \in \left[(\frac{1}{p}, \frac{1}{q}) :(\frac{1}{p}, \frac{1}{q}) \in \triangle \setminus {P, Q} \right] \cap \left[(\frac{1}{p}, \frac{1}{q}) :q > max{\sigma{-1},2} \right]$, there is a constant $B$ such that $ |\mathbb{M}f|{Lq(\mathbb{R}2)} \leq \, B \, |f|{Lp(\mathbb{R}2)}. $

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