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Ground-states for the liquid drop and TFDW models...
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Ground-states for the liquid drop and TFDW models with long-range attraction

Abstract

We prove that both the liquid drop model in $\mathbb{R}^3$ with an attractive background nucleus and the Thomas-Fermi-Dirac-von Weizsäcker (TFDW) model attain their ground-states \emph{for all} masses as long as the external potential $V(x)$ in these models is of long range, that is, it decays slower than Newtonian (e.g., $V(x)\gg |x|^{-1}$ for large $|x|$.) For the TFDW model we adapt classical concentration-compactness arguments by Lions, whereas for the liquid drop model with background attraction we utilize a recent compactness result for sets of finite perimeter by Frank and Lieb.

Authors

Alama S; Bronsard L; Choksi R; Topaloglu I

Publication date

July 20, 2017

DOI

10.48550/arxiv.1707.06674

Preprint server

arXiv
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