The Cauchy problem for the generalized KdV equation in the Sobolev space $H^{s}(\mathbf{R})$
Abstract
In this paper, we are concerned with the Cauchy problem for the generalized KdV equation with random data and rough data. Firstly, when , by using the initial value randomization technique introduced by Shen et al. (arXiv:2111.11935) and the construction of appropriate auxiliary spaces, we establish the almost sure local well-posedness of the generalized KdV equation in , which improves Theorem 1.3 of Hwang and Kwak (Proc. Amer. Math. Soc. 146(2018), 267-280.) and Theorem 1.5 of Yan et al.(arXiv:2011.07128.). Secondly, by using the well-posedness results proved in Theorem 1.1, for , we obtain \begin{eqnarray*} &&\mathbb{P}\left(\left\{\omega:\lim_{t\rightarrow0}\|u(t,x)-U(t)f^{\omega}(x)\|_{L_{x}^{\infty}}=0\right\}\right)=1, \end{eqnarray*} which improves Theorem 1.6 of Yan et al.(arXiv:2011.07128.). Thirdly, by using the dyadic decomposition and constructing appropriate function spaces, we establish nonlinear smoothing for the generalized KdV equation with rough data. Furthermore, by using this estimate, when data , we obtain \begin{eqnarray*} &&\lim_{|x|\rightarrow \infty}u(t,x)=0,\quad t\in[0, T]. \end{eqnarray*} In particular, for , we prove \begin{eqnarray*} &&\lim_{|x|\rightarrow \infty}(u(t,x)-U(t)f(x))=0. \end{eqnarray*} Finally, by using Theorem 1.1, when , we obtain \begin{eqnarray*} &&\mathbb{P}\left(\left\{\omega: \forall t\in I_{\omega}, \lim_{|x|\rightarrow \infty}\left(u(t,x)-U(t)f^{\omega}(x)\right)=0\right\}\right)=1. \end{eqnarray*}
Cite
@article{arxiv.2602.13364,
title = {The Cauchy problem for the generalized KdV equation in the Sobolev space $H^{s}(\mathbf{R})$},
author = {Xiangqian Yan and Yongsheng Li and Juan Huang and Jianhua Huang and Wei Yan},
journal= {arXiv preprint arXiv:2602.13364},
year = {2026}
}
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41 Pages