Multiplicity of normalized solutions for the fractional Schrödinger equation with potentials (2401.00621v2)
Abstract: We get multiplicity of normalized solutions for the fractional Schr\"{o}dinger equation $$ (-\Delta)su+V(\varepsilon x)u=\lambda u+h(\varepsilon x)f(u)\quad \mbox{in $\mathbb{R}N$}, \qquad\int_{\mathbb{R}N}|u|2dx=a, $$ where $(-\Delta)s$ is the fractional Laplacian, $s\in(0,1)$, $a,\varepsilon>0$, $\lambda\in\mathbb{R}$ is an unknown parameter that appears as a Lagrange multiplier, $V,h:\mathbb{R}N\rightarrow[0,+\infty)$ are bounded and continuous, and $f$ is continuous function with $L2$-subcritical growth. We prove that the numbers of normalized solutions are at least the numbers of global maximum points of $h$ when $\varepsilon$ is small enough.
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