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Gradient estimates for the fractional $p$-Poisson equation
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abstract
We consider local weak solutions to the fractional $p$-Poisson equation of order $s$, i.e. $\left( - \Delta_p\right)^s u = f$. In the range $p>1$ and $s\in \big(\frac{p-1}{p},1\big)$ we prove Calder\'on & Zygmund type estimates at the gradient level. More precisely, we show for any $q>1$ that \begin{equation*} f\in L^{\frac{qp}{p-1}}_{\rm loc} \quad\Longrightarrow\quad \nabla u\in L^{qp}_{\rm loc}. \end{equation*} The qualitative result is accompanied by a local quantitative estimate.
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Cited by 1 Pith paper
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Improved H\"older regularity of fractional $(p,q)$-Poisson equation with regular data
For the fractional (p,q)-Poisson equation, viscosity solutions are C^{0,γ} with explicit exponent min{1, (sp+α∧β)/(p-1), sp/(p-2)} for p>2, and Lipschitz when that exponent exceeds 1.
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