Logo image
Weighted fractional chain rule and nonlinear wave equations with minimal regularity
Journal article   Peer reviewed

Weighted fractional chain rule and nonlinear wave equations with minimal regularity

Kunio Hidano, Jin-Cheng Jiang, Sanghyuk Lee and Chengbo Wang
Revista Matematica Iberoamericana, Vol.36(2), pp.341-356
2020

Abstract

Fractional chain rule Generalized Strichartz estimates Glassey conjecture Nonlinear wave equations Unconditional uniqueness Mathematics (all)
We consider the local well-posedness for 3-D quadratic semilinear wave equations with radial data: (Formula Presented) It has been known that the problem is well-posed for s ≥ 2 and ill-posed for s < 3/2. In this paper, we prove unconditional well-posedness up to the scaling invariant regularity, that is to say, for s > 3/2 and thus fill the gap which was left open for many years. For the purpose, we also obtain a weighted fractional chain rule, which is of independent interest. Our method here also works for a class of nonlinear wave equations with general power type nonlinearities which contain the space-time derivatives of the unknown functions. In particular, we prove the Glassey conjecture in the radial case, with minimal regularity assumption.

Metrics

1 Record Views

Details

Logo image