[3] M. Brundin: Approach regions for the square root of the Poisson kernel and weak $L^p$ boundary functions. Preprint 1999:56, Department of Mathematics, Göteborg University and Chalmers University of Technology, 1999.
[4] M. Brundin: Approach Regions for $L^p$ potentials with respect to fractional powers of the Poisson rernel of the halfspace. Department of Mathematics, Göteborg University and Chalmers University of Technology, 2001.
[5] M. Brundin:
Approach regions for $L^p$ potentials with respect to the square root of the Poisson kernel. Math. Scand (to appear).
MR 2153413
[6] F. Di Biase:
Fatou Type Theorems: Maximal Functions and Approach Regions. Birkhäuser-Verlag, Boston, 1998.
MR 1483892 |
Zbl 0889.31002
[10] M. M. Rao, Z. D. Ren:
Theory of Orlicz Spaces. Monographs and Textbooks in Pure and Applied Mathematics, Vol. 146. Marcel Dekker, New York, 1991.
MR 1113700
[12] H. A. Schwarz: Zur Integration der partiellen Differentialgleichung $\frac{\partial ^{2}u}{\partial x^{2}}+\frac{\partial ^{2}u}{\partial y^{2}} =0$. J. Reine Angew. Math. 74 (1872), 218–253.
[13] P. Sjögren:
Une remarque sur la convergence des fonctions propres du laplacien à valeur propre critique. In: Théorie du potentiel (Orsay, 1983), Springer-Verlag, Berlin, 1984, pp. 544–548.
MR 0890377