Home
Scholarly Works
Convergence of the TFDW Energy to the Liquid Drop...
Preprint

Convergence of the TFDW Energy to the Liquid Drop Model

Abstract

We consider two nonlocal variational models arising in physical contexts. The first is the Thomas-Fermi-Dirac-von Weizäcker (TFDW) model, introduced in the study of ionization of atoms and molecules, and the second is the liquid drop model with external potential, proposed by Gamow in the context of nuclear structure. It has been observed that the two models exhibit many of the same properties, especially in regard to the existence and nonexistence of minimizers. We show that, under a "sharp interface" scaling of the coefficients and constrained mass, the TFDW energy Gamma-converges to the Liquid Drop model, for a general class of external potentials. Finally, we present some consequences for global minimization of each model.

Authors

Salazar LA; Alama S; Bronsard L

Publication date

May 29, 2020

DOI

10.48550/arxiv.2006.00039

Preprint server

arXiv
View published work (Non-McMaster Users)

Contact the Experts team