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Small data scattering for a cubic Dirac equation with Hartree type nonlinearity in $ \R^{1+3}$

Published 22 Oct 2017 in math.AP | (1710.07919v2)

Abstract: We prove that the initial value problem for the Dirac equation $ \left ( -i\gamma\mu \partial_\mu + m \right) \psi = \left(\frac{e{- |x|}}{|x|} \ast ( \overline \psi \psi)\right) \psi \quad \text{in } \ \R{1+3} $ is globally well-posed and the solution scatters to free waves asymptotically as $t \rightarrow \pm \infty$, if we start with initial data that is small in $Hs$ for $s>0$. This is an almost critical well-posedness result in the sense that $L2$ is the critical space for the equation. The main ingredients in the proof are Strichartz estimates, space-time bilinear null-form estimates for free waves in $L2$, and an application of the $Up$ and $Vp$-function spaces.

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