English

Low regularity well-posedness for the 3D Klein-Gordon-Schr\"odinger system

Analysis of PDEs 2011-04-14 v2

Abstract

The Klein-Gordon-Schr\"odinger system in 3D is shown to be locally well-posed for Schr\"odinger data in H^s and wave data in H^{\sigma} \times H^{\sigma -1}, if s > - 1/4, \sigma > - 1/2, \sigma -2s > 3/2 and \sigma -2 < s < \sigma +1 . This result is optimal up to the endpoints in the sense that the local flow map is not C^2 otherwise. It is also shown that (unconditional) uniqueness holds for s=\sigma=0 in the natural solution space C^0([0,T],L^2) \times C^0([0,T],L^2) \times C^0([0,T],H^{-1/2}) . This solution exists even globally by Colliander, Holmer and Tzirakis. The proofs are based on new well-posedness results for the Zakharov system by Bejenaru, Herr, Holmer and Tataru, and Bejenaru and Herr.

Keywords

Cite

@article{arxiv.1011.3128,
  title  = {Low regularity well-posedness for the 3D Klein-Gordon-Schr\"odinger system},
  author = {Hartmut Pecher},
  journal= {arXiv preprint arXiv:1011.3128},
  year   = {2011}
}

Comments

14 pages. Final version to appear in "Communications on Pure and Applied Analysis"

R2 v1 2026-06-21T16:43:21.313Z