Droplet breakup in the liquid drop model with background potential

Author:

Alama Stan1,Bronsard Lia1,Choksi Rustum2,Topaloglu Ihsan3

Affiliation:

1. Department of Mathematics and Statistics, McMaster University, Hamilton, ON, Canada

2. Department of Mathematics and Statistics, McGill University, Montréal, QC, Canada

3. Department of Mathematics and Applied Mathematics, Virginia Commonwealth University, Richmond, VA, USA

Abstract

We consider a variant of Gamow’s liquid drop model, with a general repulsive Riesz kernel and a long-range attractive background potential with weight [Formula: see text]. The addition of the background potential acts as a regularization for the liquid drop model in that it restores the existence of minimizers for arbitrary mass. We consider the regime of small [Formula: see text] and characterize the structure of minimizers in the limit [Formula: see text] by means of a sharp asymptotic expansion of the energy. In the process of studying this limit we characterize all minimizing sequences for the Gamow model in terms of “generalized minimizers”.

Publisher

World Scientific Pub Co Pte Lt

Subject

Applied Mathematics,General Mathematics

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1. On a quaternary nonlocal isoperimetric problem;Quarterly of Applied Mathematics;2023-07-03

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3. Existence of minimizers for a generalized liquid drop model with fractional perimeter;Nonlinear Analysis;2022-11

4. Nonexistence of minimizers for a nonlocal perimeter with a Riesz and a background potential;Rendiconti del Seminario Matematico della Università di Padova;2022-06-02

5. Large mass rigidity for a liquid drop model in 2D with kernels of finite moments;Journal de l’École polytechnique — Mathématiques;2021-11-10

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