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Vol. 167, No. 3, 2008

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James Colliander & Markus Keel & Gigiola Staffilani & Hideo Takaoka & Terence Tao

Vol. 167 (2008), No. 3, 767-865
Abstract

We obtain global well-posedness, scattering, and global Lt,x10 spacetime bounds for energy-class solutions to the quintic defocusing Schrödinger equation in R1+3, which is energy-critical. In particular, this establishes global existence of classical solutions. Our work extends the results of Bourgain [4] and Grillakis [20], which handled the radial case. The method is similar in spirit to the induction-on-energy strategy of Bourgain [4], but we perform the induction analysis in both frequency space and physical space simultaneously, and replace the Morawetz inequality by an interaction variant (first used in [12], [13]). The principal advantage of the interaction Morawetz estimate is that it is not localized to the spatial origin and so is better able to handle nonradial solutions. In particular, this interaction estimate, together with an almost-conservation argument controlling the movement of L2 mass in frequency space, rules out the possibility of energy concentration.

Authors
James Colliander
University of Toronto
Department of Mathematics
Toronto ON M5S 2E4
Canada
Markus Keel
University of Minnesota
Department of Mathematics
Minneapolis MN 55455
United States
Gigiola Staffilani
Massachusetts Institue of Technology
Department of Mathematics
Cambridge MA 02139-4307
United States
Hideo Takaoka
Kobe University
Department of Mathematics
1-1, Rokkodai
Nada-ku, Kobe
657-8501
Japan
Terence Tao
University of California
Mathematics Department
Los Angeles CA 90095-1555
United States