Global well-posedness for intermediate NLS with nonvanishing conditions at infinity

Fuente: arXiv
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Autori principali: Akahori, Takafumi, Badreddine, Rana, Ibrahim, Slim, Kishimoto, Nobu
Natura: Preprint
Pubblicazione: 2025
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author Akahori, Takafumi
Badreddine, Rana
Ibrahim, Slim
Kishimoto, Nobu
author_facet Akahori, Takafumi
Badreddine, Rana
Ibrahim, Slim
Kishimoto, Nobu
contents The intermediate nonlinear Schrödinger equation (INLS) describes the dynamics of the envelope of weakly nonlinear internal waves in a stratified fluid of finite depth. While the INLS equation is known to admit dark soliton solutions, these solutions possess nonvanishing boundary conditions at spatial infinity and therefore fall outside the scope of existing well-posedness frameworks. This paper establishes the local and global well-posedness of a generalized INLS equation in Zhidkov-type spaces tailored to these nonvanishing boundary conditions. Furthermore, we rigorously justify the deep-water limit, proving that solutions of the generalized INLS converge to those of the generalized Calogero-Moser (CM) derivative NLS equation in Zhidkov-type spaces. Our well-posedness theory relies on the modified energy method combined with frequency envelopes, marking the first application of these techniques to Zhidkov-type spaces.
format Preprint
id arxiv_https___arxiv_org_abs_2512_18998
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Global well-posedness for intermediate NLS with nonvanishing conditions at infinity
Akahori, Takafumi
Badreddine, Rana
Ibrahim, Slim
Kishimoto, Nobu
Analysis of PDEs
The intermediate nonlinear Schrödinger equation (INLS) describes the dynamics of the envelope of weakly nonlinear internal waves in a stratified fluid of finite depth. While the INLS equation is known to admit dark soliton solutions, these solutions possess nonvanishing boundary conditions at spatial infinity and therefore fall outside the scope of existing well-posedness frameworks. This paper establishes the local and global well-posedness of a generalized INLS equation in Zhidkov-type spaces tailored to these nonvanishing boundary conditions. Furthermore, we rigorously justify the deep-water limit, proving that solutions of the generalized INLS converge to those of the generalized Calogero-Moser (CM) derivative NLS equation in Zhidkov-type spaces. Our well-posedness theory relies on the modified energy method combined with frequency envelopes, marking the first application of these techniques to Zhidkov-type spaces.
title Global well-posedness for intermediate NLS with nonvanishing conditions at infinity
topic Analysis of PDEs
url https://arxiv.org/abs/2512.18998