Existence and symmetry breaking results for positive solutions of elliptic Hamiltonian systems
Canadian journal of mathematics, Tome 77 (2025) no. 5, pp. 1459-1487
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In this paper, we are interested in positive solutions of $$ \begin{align*}\left\{ \begin{array}{@{}ll} -\Delta u = a(x)v^{p-1}, \quad &\text{ in } \Omega,\\ -\Delta v = b(x)u^{q-1}, \quad &\text{ in } \Omega,\\ u,v>0, \quad &\text{ in } \Omega,\\ u=v=0, \quad &\text{ on } \partial\Omega, \end{array} \right. \end{align*} $$where $\Omega $ is a bounded annular domain (not necessarily an annulus) in ${\mathbb {R}}^N (N \ge 3)$ and $ a(x), b(x)$ are positive continuous functions. We show the existence of a positive solution for a range of supercritical values of p and q when the problem enjoys certain mild symmetry and monotonicity conditions. We shall also address the symmetry breaking phenomena where the system is fully symmetric. Indeed, as a consequence of our results, we shall show that problem (1) has $\Bigl \lfloor \frac {N}{2} \Bigr \rfloor $ (the floor of $\frac {N}{2}$) positive non-radial solutions when $ a(x)=b(x)=1$ and $\Omega $ is an annulus with certain assumptions on the radii. In general, for the radial case where the domain is an annulus, we prove the existence of a non-radial solution provided $$ \begin{align*}(p-1)(q-1)> \Big(1+\frac{2N}{\lambda_H}\Big)^2\left(\frac{q}{p}\right),\end{align*} $$where $\lambda _H$ is the best constant for the Hardy inequality on $\Omega .$ We remark that the best constant $\lambda _H$ for the Hardy inequality is just the characteristic of the domain, and is independent of the choices of p and $q.$ For this reason, the aforementioned inequality plays a major role to prove the existence and multiplicity of non-radial solutions when the problem is fully symmetric. Our proofs use a variational formulation on appropriate convex subsets for which the lack of compactness is recovered for the supercritical problem.
Mots-clés :
Symmetry breaking, Hamiltonian systems, variational principles
Moameni, Abbas; Wong, Kok Lin. Existence and symmetry breaking results for positive solutions of elliptic Hamiltonian systems. Canadian journal of mathematics, Tome 77 (2025) no. 5, pp. 1459-1487. doi: 10.4153/S0008414X24000397
@article{10_4153_S0008414X24000397,
author = {Moameni, Abbas and Wong, Kok Lin},
title = {Existence and symmetry breaking results for positive solutions of elliptic {Hamiltonian} systems},
journal = {Canadian journal of mathematics},
pages = {1459--1487},
year = {2025},
volume = {77},
number = {5},
doi = {10.4153/S0008414X24000397},
url = {http://geodesic.mathdoc.fr/articles/10.4153/S0008414X24000397/}
}
TY - JOUR AU - Moameni, Abbas AU - Wong, Kok Lin TI - Existence and symmetry breaking results for positive solutions of elliptic Hamiltonian systems JO - Canadian journal of mathematics PY - 2025 SP - 1459 EP - 1487 VL - 77 IS - 5 UR - http://geodesic.mathdoc.fr/articles/10.4153/S0008414X24000397/ DO - 10.4153/S0008414X24000397 ID - 10_4153_S0008414X24000397 ER -
%0 Journal Article %A Moameni, Abbas %A Wong, Kok Lin %T Existence and symmetry breaking results for positive solutions of elliptic Hamiltonian systems %J Canadian journal of mathematics %D 2025 %P 1459-1487 %V 77 %N 5 %U http://geodesic.mathdoc.fr/articles/10.4153/S0008414X24000397/ %R 10.4153/S0008414X24000397 %F 10_4153_S0008414X24000397
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