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Autor principal: Ataei, Alireza
Formato: Preprint
Publicado: 2024
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Acceso en línea:https://arxiv.org/abs/2405.07315
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author Ataei, Alireza
author_facet Ataei, Alireza
contents In this work, we derive a sharp condition on the mass of the initial data for the global existence of the Chern-Simons-Schrödinger equation. As a corollary, we prove that if the strength of interaction is less than the Bogomolny bound, then, for a large enough mass of initial data, there exists a globally defined solution. On the other hand, for the interactions which are above the Bogomolny bound, the critical mass condition on the initial data for the global existence depends on the strength of the self-interacting field. Then, we show that the states with the initial critical mass and zero energy are standing wave solutions and globally well-posed. Moreover, they are static if the self-interacting field is large enough and non-static for small self-interacting field.
format Preprint
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institution arXiv
publishDate 2024
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spellingShingle A Sharp condition on global wellposedness of Chern-Simons-Schrödinger equation
Ataei, Alireza
Analysis of PDEs
In this work, we derive a sharp condition on the mass of the initial data for the global existence of the Chern-Simons-Schrödinger equation. As a corollary, we prove that if the strength of interaction is less than the Bogomolny bound, then, for a large enough mass of initial data, there exists a globally defined solution. On the other hand, for the interactions which are above the Bogomolny bound, the critical mass condition on the initial data for the global existence depends on the strength of the self-interacting field. Then, we show that the states with the initial critical mass and zero energy are standing wave solutions and globally well-posed. Moreover, they are static if the self-interacting field is large enough and non-static for small self-interacting field.
title A Sharp condition on global wellposedness of Chern-Simons-Schrödinger equation
topic Analysis of PDEs
url https://arxiv.org/abs/2405.07315