Regularity of almost periodic modulo scaling solutions for mass-critical NLS and applications
Abstract
In this paper, we consider the Lx2 solution u to mass critical NLS iut+ u= |u| 4d u. We prove that in dimensions d 4, if the solution is spherically symmetric and is almost periodic modulo scaling, then it must lie in Hx1+ for some >0. Moreover, the kinetic energy of the solution is localized uniformly in time. One important application of the theorem is a simplified proof of the scattering conjecture for mass critical NLS without reducing to three enemies(see the work of Killip-Tao-Visan, and Killip-Visan-Zhang). As another important application, we establish a Liouville type result for Lx2 initial data with ground state mass. We prove that if a radial Lx2 solution to focusing mass critical problem has the ground state mass and does not scatter in both time directions, then it must be global and coincide with the solitary wave up to symmetries. Here the ground state is the unique, positive, radial solution to elliptic equation Q-Q+Q1+ 4d=0. This is the first rigidity type result in scale invariant space Lx2.
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