On the solutions of nonlocal 1-Laplacian equation with $ L^1 $-data

IF 1.1 3区 数学 Q1 MATHEMATICS Discrete and Continuous Dynamical Systems Pub Date : 2023-11-01 DOI:10.3934/dcds.2023148
Dingding Li, Chao Zhang
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引用次数: 0

Abstract

We study the solutions to a nonlocal 1-Laplacian equation given by $$ 2\text{P.V.}\int_{\mathbb{R}^N}\frac{u(x)-u(y)}{|u(x)-u(y)|} \frac{dy}{|x-y|^{N+s}}=f(x) \quad \textmd{for } x\in \Omega, $$ with Dirichlet boundary condition $u(x)=0$ in $\mathbb R^N\backslash \Omega$ and nonnegative $L^1$-data. By investigating the asymptotic behaviour of renormalized solutions $u_p$ to the nonlocal $p$-Laplacian equations as $p$ goes to $1^+$, we introduce a suitable definition of solutions and prove that the limit function $u$ of $\{u_p\}$ is a solution of the nonlocal $1$-Laplacian equation above.
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关于有 $ L^1 $ 数据的非局部 1-拉普拉斯方程的解
我们研究了由 $$ 2\text{P.V.}\int_{mathbb{R}^N}\frac{u(x)-u(y)}{|u(x)-u(y)|} 所给出的非局部 1 拉普拉斯方程的解。\frac{dy}{|x-y|^{N+s}}=f(x) \quad \textmd{for } x\in \Omega, $$ 在 $\mathbb R^N\backslash \Omega$ 中具有德里赫特边界条件 $u(x)=0$ 和非负 $L^1$ 数据。通过研究非局部 $p$ 拉普拉斯方程的重正化解 $u_p$ 在 $p$ 达到 1^+$ 时的渐近行为,我们引入了一个合适的解的定义,并证明了 $\{u_p\}$ 的极限函数 $u$ 是上述非局部 1$ 拉普拉斯方程的解。
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来源期刊
CiteScore
2.50
自引率
0.00%
发文量
175
审稿时长
6 months
期刊介绍: DCDS, series A includes peer-reviewed original papers and invited expository papers on the theory and methods of analysis, differential equations and dynamical systems. This journal is committed to recording important new results in its field and maintains the highest standards of innovation and quality. To be published in this journal, an original paper must be correct, new, nontrivial and of interest to a substantial number of readers.
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