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1.
On the concentration-compactness principle for anisotropic variable exponent Sobolev spaces and its applications
Nabil Chems Eddine, Maria Alessandra Ragusa, Dušan Repovš, 2024, original scientific article

Abstract: We obtain critical embeddings and the concentration-compactness principle for the anisotropic variable exponent Sobolev spaces. As an application of these results,we confirm the existence of and find infinitely many nontrivial solutions for a class of nonlinear critical anisotropic elliptic equations involving variable exponents and two real parameters. With the groundwork laid in this work, there is potential for future extensions, particularly in extending the concentration-compactness principle to anisotropic fractional order Sobolev spaces with variable exponents in bounded domains. This extension could find applications in solving the generalized fractional Brezis–Nirenberg problem.
Keywords: Sobolev embeddings, concentration-compactness principle, anisotropic variable exponent Sobolev spaces, p(x)-Laplacian, fractional Brezis-Nirenberg problem
Published in DiRROS: 20.03.2024; Views: 282; Downloads: 404
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2.
On the Schrödinger-Poisson system with $(p,q)$-Laplacian
Yueqiang Song, Yuanyuan Huo, Dušan Repovš, 2023, original scientific article

Abstract: We study a class of Schrödinger-Poisson systems with $(p,q)$-Laplacian. Using fixed point theory, we obtain a new existence result for nontrivial solutions. The main novelty of the paper is the combination of a double phase operator and the nonlocal term. Our results generalize some known results.
Keywords: double phase operator, Schrödinger-Poisson systems, (p, q)–Laplacian, fixed point theory
Published in DiRROS: 14.03.2024; Views: 98; Downloads: 48
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