The final-state problem for the cubic-quintic NLS with non-vanishing boundary conditions
Abstract
We construct solutions with prescribed scattering state to the cubic-quintic NLS in three spatial dimensions in the class of solutions with as . This models disturbances in an infinite expanse of (quantum) fluid in its quiescent state --- the limiting modulus corresponds to a local minimum in the energy density. Our arguments build on work of Gustafson, Nakanishi, and Tsai on the (defocusing) Gross--Pitaevskii equation. The presence of an energy-critical nonlinearity and changes in the geometry of the energy functional add several new complexities. One new ingredient in our argument is a demonstration that solutions of such (perturbed) energy-critical equations exhibit continuous dependence on the initial data with respect to the \emph{weak} topology on .
Keywords
Cite
@article{arxiv.1506.06151,
title = {The final-state problem for the cubic-quintic NLS with non-vanishing boundary conditions},
author = {Rowan Killip and Jason Murphy and Monica Visan},
journal= {arXiv preprint arXiv:1506.06151},
year = {2016}
}
Comments
46 pages