Wigner-Crystal Formulation of Strong-Coupling Theory for Counter-ions Near Planar Charged Interfaces
arXiv:1112.3763 · doi:10.1103/PhysRevE.84.041401
Abstract
We present a new analytical approach to the strong electrostatic coupling regime (SC), that can be achieved equivalently at low temperatures, high charges, low dielectric permittivity etc. Two geometries are analyzed in detail: one charged wall first, and then, two parallel walls at small distances, that can be likely or oppositely charged. In all cases, one type of mobile counter-ions only is present, and ensures electroneutrality (salt free case). The method is based on a systematic expansion around the ground state formed by the two-dimensional Wigner crystal(s) of counter-ions at the plate(s). The leading SC order stems from a single-particle theory, and coincides with the virial SC approach that has been much studied in the last 10 years. The first correction has the functional form of the virial SC prediction, but the prefactor is different. The present theory is free of divergences and the obtained results, both for symmetrically and asymmetrically charged plates, are in excellent agreement with available data of Monte-Carlo simulations under strong and intermediate Coulombic couplings. All results obtained represent relevant improvements over the virial SC estimates. The present SC theory starting from the Wigner crystal and therefore coined Wigner SC, sheds light on anomalous phenomena like the counter-ion mediated like-charge attraction, and the opposite-charge repulsion.
References in corpus (12)
- Local molecular field theory for effective attractions between like charged objects in systems with strong Coulomb interactions
- Reentrant transitions in colloidal or dusty plasma bilayers
- Strong Coupling Electrostatics in the Presence of Dielectric Inhomogeneities
- Bjerrum pairing correlations at charged interfaces
- Weak and Strong Coupling Theories for Polarizable Colloids and Nano-Particles
- Distribution of counterions near discretely charged planes and rods
- Scaling and Universality in the Counterion-Condensation Transition at Charged Cylinders
- Attraction Between Like-Charged Walls: Short-Ranged Simulations Using Local Molecular Field Theory
- Weak and Strong-Coupling Electrostatic Interactions between Asymmetrically Charged Planar Surfaces
- One-dimensional counterion gas between charged surfaces: Exact results compared with weak- and strong-coupling analysis
- Ground state structure and interactions between dimeric 2D Wigner crystals
- Interaction regimes for oppositely charged plates with multivalent counterions
Cited by in corpus (22)
- Perspective: Coulomb fluids -- weak coupling, strong coupling, in between and beyond
- Freezing point depression and freeze-thaw damage by nano-fuidic salt trapping
- Critical phenomena and phase sequence in classical bilayer Wigner crystal at zero temperature
- Solving Fluctuation-Enhanced Poisson-Boltzmann Equations
- Ground state of classical bilayer Wigner crystals
- The contact theorem for charged fluids: from planar to curved geometries
- Counter-ion density profile around charged cylinders: the strong-coupling needle limit
- Electric double layers with surface charge modulations: Novel exact Poisson-Boltzmann solutions
- Image charge effects under metal and dieletric boundary conditions
- Strong-coupling theory of counterions with hard cores between symmetrically charged walls
- Strong coupling electrostatic theory of polymer counterions close to planar charges
- Attraction of like-charged walls with counterions only: Exact results for the 2D cylinder geometry
- Phase diagram and critical properties of Yukawa bilayers
- Screening of an electrically charged particle in a two-dimensional two-component plasma at
- Electric double layers with modulated surface charge density: Exact 2D results
- Counter-ion density profile around a charged disk: from the weak to the strong association regime
- Adsorption of highly charged Gaussian polyelectrolytes to oppositely charged surfaces
- Quasi-universality in mixed counterions systems
- Ground-state correlation energy of counterions at a charged planar wall: Gibbs-Bogoliubov lower-bound approach
- Machine-Learned Many-Body Potentials for Charged Colloids reveal Gas-Liquid Spinodal Instabilities only in the strong-coupling regime of Primitive Models
- Effective interaction between guest charges immersed in 2D jellium
- Contact value theorem for electric double layers with modulated surface charge density