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Least energy radial sign-changing solution for the Schröinger-Poisson system in r3 under an asymptotically cubic nonlinearity

Published 1 May 2018 in math.AP | (1805.00259v1)

Abstract: In this paper we consider the following Schr\"odinger-Poisson system in the whole $\mathbb R{3}$, \begin{equation*} \left{ \begin{array}{ll} -\Delta u+u+ \lambda \phi u=f(u) &\text{ in } \mathbb R3, -\Delta \phi= u2 &\text{ in } \mathbb R3, \end{array} \right. \end{equation*} where $\lambda>0$ and the nonlinearity $f$ is "asymptotically cubic" at infinity. This implies that the nonlocal term $\phi u$ and the nonlinear term $f(u)$ are, in some sense, in a strict competition. We show that the system admits a least energy sign-changing and radial solution obtained by minimizing the energy functional on the so-called {nodal Nehari set).

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