Classical solutions of oblique derivative problem in nonsmooth domains with mean Dini coefficients

Author:

Dong Hongjie,Li Zongyuan

Abstract

We consider second-order elliptic equations in nondivergence form with oblique derivative boundary conditions. We show that any strong solutions to such problems are twice continuously differentiable up to the boundary when the boundary can be locally represented by a C 1 C^1 function whose first derivatives are Dini continuous and the mean oscillations of coefficients satisfy the Dini condition. This improves a recent result by Dong, Lee, and Kim. To the best of our knowledge, such a result is new even for the Poisson equation. An extension to concave fully nonlinear elliptic equations is also presented.

Funder

National Science Foundation

Publisher

American Mathematical Society (AMS)

Subject

Applied Mathematics,General Mathematics

Reference27 articles.

1. Gradient estimates for parabolic and elliptic systems from linear laminates;Dong, Hongjie;Arch. Ration. Mech. Anal.,2012

2. On 𝐶¹, 𝐶², and weak type-(1,1) estimates for linear elliptic operators: part II;Dong, Hongjie;Math. Ann.,2018

3. On 𝐶¹, 𝐶², and weak type-(1,1) estimates for linear elliptic operators;Dong, Hongjie;Comm. Partial Differential Equations,2017

4. Second-order elliptic and parabolic equations with 𝐵(ℝ²,𝕍𝕄𝕆) coefficients;Dong, Hongjie;Trans. Amer. Math. Soc.,2010

5. Hongjie Dong, Jihoon Lee, and Seick Kim, On conormal and oblique derivative problem for elliptic equations with dini mean oscillation coefficients, to appear in Indiana Univ. Math. J., arXiv:1801.09836.

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