Electrified liquids are well known to be prone to a variety of interfacial instabilities that result in the onset of apparent interfacial singularities and liquid fragmentation. In the case of electrically conducting liquids, one of the basic models describing the equilibrium interfacial configurations and the onset of instability assumes the liquid to be equipotential and interprets those configurations as local minimizers of the energy consisting of the sum of the surface energy and the electrostatic energy. Here we show that, surprisingly, this classical geometric variational model is mathematically ill-posed irrespective of the degree to which the liquid is electrified. Specifically, we demonstrate that an isolated spherical droplet is ...
The first atomistic simulations that reveal the mechanism of Rayleigh fission are presented. It is d...
Aqueous droplets acquire charge when they contact electrodes in high-voltage electric fields. Althou...
We prove that charged liquid droplets minimizing Debye-Huckel-type free energy are spherical in the ...
The equilibrium shapes of two-dimensional charged, perfectly conducting liquid drops are governed by...
The equilibrium shapes of two-dimensional charged, perfectly conducting liquid drops are governed by...
We study a geometric variational problem arising from modeling two-dimensional charged drops of a pe...
We study a geometric variational problem arising from modeling two-dimensional charged drops of a pe...
We consider a variational problem related to the shape of charged liquid drops at equilibrium. We sh...
In this work we study the static shape of charged drops of a conducting fluid placed over a solid su...
This work uses a minimalist model for deciphering the opposing effects of Coulomb repulsion and surf...
I will present an overview of recent analytical developments in the studies of equilibrium configura...
none2siWe review some recent results on the equilibrium shapes of charged liquid drops. We show that...
We study global minimizers of a functional modeling the free energy of thin liquid layers over a sol...
This work uses a minimalist model for deciphering the opposing effects of Coulomb repulsion and surf...
The disintegration of liquid drops with low electrical conductivity and subject to an electric field...
The first atomistic simulations that reveal the mechanism of Rayleigh fission are presented. It is d...
Aqueous droplets acquire charge when they contact electrodes in high-voltage electric fields. Althou...
We prove that charged liquid droplets minimizing Debye-Huckel-type free energy are spherical in the ...
The equilibrium shapes of two-dimensional charged, perfectly conducting liquid drops are governed by...
The equilibrium shapes of two-dimensional charged, perfectly conducting liquid drops are governed by...
We study a geometric variational problem arising from modeling two-dimensional charged drops of a pe...
We study a geometric variational problem arising from modeling two-dimensional charged drops of a pe...
We consider a variational problem related to the shape of charged liquid drops at equilibrium. We sh...
In this work we study the static shape of charged drops of a conducting fluid placed over a solid su...
This work uses a minimalist model for deciphering the opposing effects of Coulomb repulsion and surf...
I will present an overview of recent analytical developments in the studies of equilibrium configura...
none2siWe review some recent results on the equilibrium shapes of charged liquid drops. We show that...
We study global minimizers of a functional modeling the free energy of thin liquid layers over a sol...
This work uses a minimalist model for deciphering the opposing effects of Coulomb repulsion and surf...
The disintegration of liquid drops with low electrical conductivity and subject to an electric field...
The first atomistic simulations that reveal the mechanism of Rayleigh fission are presented. It is d...
Aqueous droplets acquire charge when they contact electrodes in high-voltage electric fields. Althou...
We prove that charged liquid droplets minimizing Debye-Huckel-type free energy are spherical in the ...