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Existence of solutions to a generalized self-dual Chern-Simons equation on finite graphs

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arxiv 2202.02525 v3 pith:T5I4PYP3 submitted 2022-02-05 math.AP

classification math.AP
keywords lambdaequationchern-simonsgeneralizeddeltasolutionswhenexistence
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abstract

Let $G=(V,E)$ be a connected finite graph. We study the existence of solutions for the following generalized Chern-Simons equation on $G$ \begin{equation*} \Delta u=\lambda \mathrm{e}^{u}\left(\mathrm{e}^{u}-1\right)^{5}+4 \pi \sum_{s=1}^{N} \delta_{p_{s}} \quad , \end{equation*} where $\lambda>0$, $\delta_{p_{s}}$ is the Dirac mass at the vetex $p_s$, and $p_1, p_2,\dots, p_N$ are arbitrarily chosen distinct vertices on the graph. We show that there exists a critial value $\hat{\lambda}$ such that when $\lambda > \hat{\lambda}$, the generalized Chern-Simons equation has at least two solutions, when $\lambda = \hat{\lambda}$, the generalized Chern-Simons equation has a solution, and when $\lambda < \hat\lambda$, the generalized Chern-Simons equation has no solution.

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  1. Existence theory for elliptic equations of general exponential nonlinearity on finite graphs

    math.AP 2025-05 reject novelty 6.0 of 10

    A sign error in the graph-reduction step invalidates the claimed Brouwer degree formula and the existence theory built on it.

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