Ground state solutions for Schrödinger–Poisson system with critical growth and nonperiodic potential

Author:

Kang Jin-Cai1,Chen Xiao-Ping1ORCID,Tang Chun-Lei1ORCID

Affiliation:

1. School of Mathematics and Statistics, Southwest University, Chongqing 400715, China

Abstract

This paper is concerned with the existence of ground state solutions for the Schrödinger–Poisson system −Δ u + V( x) u + ϕu = | u|4 u + λ| u| p−2 u in [Formula: see text] and −Δ ϕ = u2 in [Formula: see text], where λ > 0 and p ∈ [4, 6). Here, [Formula: see text], V( x) = V1( x) for x1 > 0, and V( x) = V2( x) for x1 < 0, where V1, V2 are periodic functions in each coordinate direction. In this paper, we give a splitting lemma corresponding to the nonperiodic potential and, then, prove the existence of ground state solutions for any λ > 0 when p ∈ (4, 6). Moreover, when p = 4, the above system possesses a ground state solution for λ > 0 sufficiently large. It is worth underlining that the technique employed in this paper is also valid for the Sobolev subcritical problem studied by Cheng and Wang [Discrete Contin. Dyn. Syst., Ser. B 27, 6295 (2022)].

Funder

National Natural Science Foundation of China

Publisher

AIP Publishing

Subject

Mathematical Physics,Statistical and Nonlinear Physics

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