We investigate the statistical mechanics of an inhomogeneous Coulomb fluid composed of charged particles with static polarizability. We derive the weak- and the strong-coupling approximations and evaluate the partition function in a planar dielectric slab geometry with charged boundaries. We investigate the density profiles and the disjoining pressure for both approximations. Comparison to the case of non-polarizable counterions shows that polarizability brings important differences in the counterion density distribution as well as the counterion mediated electrostatic interactions between charged dielectric interfaces
32 pages, 11 figuresThe equilibrium density profiles in a classical multicomponent plasma near a har...
Using Monte Carlo simulations in conjunction with periodic Green’s function methods, we study the in...
We investigate the ion distribution and overcharging at charged interfaces with dielectric inhomogen...
We investigate the statistical mechanics of an inhomogeneous Coulomb fluid composed of charged parti...
We present a personal view on the current state of statistical mechanics of Coulomb fluids with spec...
A theory is presented which allows us to accurately calculate the density profile of monovalent and ...
We present a personal view on the current state of statistical mechanics of Coulomb fluids with spec...
A simple field theory approach is developed to model the propertiesof charged, dielectric bodies and...
A simple field theory approach is developed to model the properties of charged, dielectric bodies an...
By a combination of Monte Carlo simulations and analytical calculations, we investigate the effectiv...
Coarse-grained implicit solvent Molecular Dynamics (MD) simulations have been used to investigate th...
The Poisson-Boltzmann (PB) approach gives asymptotically exact counter-ion density profiles around ...
We study thermal equilibrium of classical pointlike counterions confined between symmetrically charg...
We compare weak- and strong-coupling theory of counterion-mediated electrostatic interactions betwee...
Theoretical approaches to calculating electrostatic interactions between charged particles of dielec...
32 pages, 11 figuresThe equilibrium density profiles in a classical multicomponent plasma near a har...
Using Monte Carlo simulations in conjunction with periodic Green’s function methods, we study the in...
We investigate the ion distribution and overcharging at charged interfaces with dielectric inhomogen...
We investigate the statistical mechanics of an inhomogeneous Coulomb fluid composed of charged parti...
We present a personal view on the current state of statistical mechanics of Coulomb fluids with spec...
A theory is presented which allows us to accurately calculate the density profile of monovalent and ...
We present a personal view on the current state of statistical mechanics of Coulomb fluids with spec...
A simple field theory approach is developed to model the propertiesof charged, dielectric bodies and...
A simple field theory approach is developed to model the properties of charged, dielectric bodies an...
By a combination of Monte Carlo simulations and analytical calculations, we investigate the effectiv...
Coarse-grained implicit solvent Molecular Dynamics (MD) simulations have been used to investigate th...
The Poisson-Boltzmann (PB) approach gives asymptotically exact counter-ion density profiles around ...
We study thermal equilibrium of classical pointlike counterions confined between symmetrically charg...
We compare weak- and strong-coupling theory of counterion-mediated electrostatic interactions betwee...
Theoretical approaches to calculating electrostatic interactions between charged particles of dielec...
32 pages, 11 figuresThe equilibrium density profiles in a classical multicomponent plasma near a har...
Using Monte Carlo simulations in conjunction with periodic Green’s function methods, we study the in...
We investigate the ion distribution and overcharging at charged interfaces with dielectric inhomogen...