We introduce the concept of Calderón–Zygmund inequalities on Riemannian manifolds. For 1<∞, these are inequalities of the form ‖Hess(u)‖Lp≤C1‖u‖Lp+C2‖Δu‖Lp, valid a priori for all smooth functions u with compact support, and constants C1≥0, C2>0. Such an inequality can hold or fail, depending on the underlying Riemannian geometry. After establishing some generally valid facts and consequences of the Calderón–Zygmund inequality (like new denseness results for second order Lp-Sobolev spaces and gradient estimates), we establish sufficient geometric criteria for the validity of these inequalities on possibly noncompact Riemannian manifolds. These results in particular apply to many noncompact hypersurfaces of constant mean curvature.
Güneysu, B., Pigola, S. (2015). The Calderón-Zygmund inequality and Sobolev spaces on noncompact Riemannian manifolds. ADVANCES IN MATHEMATICS, 281, 353-393 [10.1016/j.aim.2015.03.027].
The Calderón-Zygmund inequality and Sobolev spaces on noncompact Riemannian manifolds
PIGOLA, STEFANO
2015
Abstract
We introduce the concept of Calderón–Zygmund inequalities on Riemannian manifolds. For 1<∞, these are inequalities of the form ‖Hess(u)‖Lp≤C1‖u‖Lp+C2‖Δu‖Lp, valid a priori for all smooth functions u with compact support, and constants C1≥0, C2>0. Such an inequality can hold or fail, depending on the underlying Riemannian geometry. After establishing some generally valid facts and consequences of the Calderón–Zygmund inequality (like new denseness results for second order Lp-Sobolev spaces and gradient estimates), we establish sufficient geometric criteria for the validity of these inequalities on possibly noncompact Riemannian manifolds. These results in particular apply to many noncompact hypersurfaces of constant mean curvature.File | Dimensione | Formato | |
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