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On fractional Schrödinger equations with Hartree type nonlinearities

Published 14 Oct 2021 in math.AP | (2110.07530v2)

Abstract: Goal of this paper is to study the following doubly nonlocal equation \begin{equation}\label{eq_abstract} (- \Delta)s u + \mu u = (I_\alpha*F(u))F'(u) \quad \hbox{in $\mathbb{R}N$} \tag{P} \end{equation} in the case of general nonlinearities $F \in C1(\mathbb{R})$ of Berestycki-Lions type, when $N \geq 2$ and $\mu>0$ is fixed. Here $(-\Delta)s$, $s \in (0,1)$, denotes the fractional Laplacian, while the Hartree-type term is given by convolution with the Riesz potential $I_{\alpha}$, $\alpha \in (0,N)$. We prove existence of ground states of \eqref{eq_abstract}. Furthermore we obtain regularity and asymptotic decay of general solutions, extending some results contained in [25, 65].

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