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arXiv:1202.5201 [math.AP]AbstractReferencesReviewsResources

Strichartz estimates for Schrödinger equations with variable coefficients and unbounded potentials

Haruya Mizutani

Published 2012-02-23, updated 2013-01-22Version 3

The present paper is concerned with Schr\"odinger equations with variable coefficients and unbounded electromagnetic potentials, where the kinetic energy part is a long-range perturbation of the flat Laplacian and the electric (resp. magnetic) potential can grow subquadratically (resp. sublinearly) at spatial infinity. We prove sharp (local-in-time) Strichartz estimates, outside a large compact ball centered at origin, for any admissible pair including the endpoint. Under the nontrapping condition on the Hamilton flow generated by the kinetic energy, global-in-space estimates are also studied. Finally, under the nontrapping condition, we prove Strichartz estimates with an arbitrarily small derivative loss without asymptotic flatness on the coefficients.

Comments: 42 pages. Revised version accepted for publication in Analysis and PDE
Categories: math.AP
Subjects: 35Q41, 35B45, 81Q20
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