Stable Determination of Coefficients in Nonlinear Dynamical Schr\"odinger Equations by Carleman Estimates
Abstract
We consider the inverse problem of recovering stationary coefficients in a class of dynamical Schr\"odinger equations with locally analytic nonlinear terms. Upon treating the well-posedness for small initial data and trivial boundary data, we proceed to establish stable and unique determination provided knowledge of the coefficients near the boundary and the measured Neumann data of the solution. We discuss both the case of measurement on a subset of the boundary large enough to satisfy a certain geometrical condition and, under stronger assumptions on the regularity and size of the coefficients, the case of measurement on arbitrary subsets of the boundary. Our argument relies on high-order linearization and Carleman estimates for the linear Schr\"odinger equation.
Keywords
Cite
@article{arxiv.2508.07231,
title = {Stable Determination of Coefficients in Nonlinear Dynamical Schr\"odinger Equations by Carleman Estimates},
author = {Pranav Arrepu and Hanming Zhou},
journal= {arXiv preprint arXiv:2508.07231},
year = {2025}
}
Comments
32 pages (including 2 pages of references), fixed an issue with equations (3.14) - (3.16) involving missing constants, comments welcome