Critical phenomena and phase sequence in classical bilayer Wigner crystal at zero temperature
arXiv:1207.3920 · doi:10.1103/PhysRevB.85.205131
Abstract
We study the ground-state properties of a system of identical classical Coulombic point particles, evenly distributed between two equivalently charged parallel plates at distance ; the system as a whole is electroneutral. It was previously shown that upon increasing d from 0 to infinity, five different structures of the bilayer Wigner crystal become energetically favored, starting from a hexagonal lattice (phase I, d=0) and ending at a staggered hexagonal lattice (phase V, d -> infinity). In this paper, we derive new series representations of the ground-state energy for all five bilayer structures. The derivation is based on a sequence of transformations for lattice sums of Coulomb two-particle potentials plus the neutralizing background, having their origin in the general theory of Jacobi theta functions. The new series provide convenient starting points for both analytical and numerical progress. Its convergence properties are indeed excellent: Truncation at the fourth term determines in general the energy correctly up to 17 decimal digits. The accurate series representations are used to improve the specification of transition points between the phases and to solve a controversy in previous studies. In particular, it is shown both analytically and numerically that the hexagonal phase I is stable only at d=0, and not in a finite interval of small distances between the plates as was anticipated before. The expansions of the structure energies around second-order transition points can be done analytically, which enables us to show that the critical behavior is of the Ginzburg-Landau type, with a mean-field critical index beta=1/2 for the growth of the order parameters.
References in corpus (9)
- Stability of boron nitride bilayers: Ground state energies, interlayer distances, and tight-binding description
- Reentrant transitions in colloidal or dusty plasma bilayers
- Wigner-Crystal Formulation of Strong-Coupling Theory for Counter-ions Near Planar Charged Interfaces
- Ground state of classical bilayer Wigner crystals
- Ground state structure and interactions between dimeric 2D Wigner crystals
- Pinning modes and interlayer correlation in high magnetic field bilayer Wigner solids
- Ewald methods for inverse power-law interactions in tridimensional and quasi-two dimensional systems
- Long-range correlations of the surface charge density between electrical media with flat and spherical interfaces
- Pinned Bilayer Wigner Crystals with Pseudospin Magnetism
Cited by in corpus (21)
- Dimension reduction techniques for the minimization of theta functions on lattices
- The rich polymorphic behavior of Wigner bilayers
- Buckling of 2D Plasma Crystals with Non-reciprocal Interactions
- Interaction between charge-regulated metal nanoparticles in an electrolyte solution
- On Born's conjecture about optimal distribution of charges for an infinite ionic crystal
- Like-charge attraction at the nanoscale: ground-state correlations and water destructuring
- Dispersion relation of square lattice waves in a two-dimensional binary complex plasma
- Ground state structure of a bilayer Wigner crystal with repulsive dielectric images
- Two-dimensional Wigner crystals of classical Lennard-Jones particles
- Strong-coupling theory of counterions with hard cores between symmetrically charged walls
- Taking one charge off a two-dimensional Wigner crystal
- Counter-ions between or at asymmetrically charged walls: 2D free-fermion point
- Phase diagram and critical properties of Yukawa bilayers
- The asymmetric Wigner bilayer
- Counter-ion density profile around a charged disk: from the weak to the strong association regime
- Generation of off-critical zeros for hypercubic Epstein zeta-functions
- Magnetism of the Bilayer Wigner Crystal
- Local variational study of 2d lattice energies and application to Lennard-Jones type interactions
- Separation of Wigner structures for 2D equimolar binary mixtures of Coulomb particles
- Tricriticality for dimeric Coulomb molecular crystals in ground state
- Ordered ground state configurations of the asymmetric Wigner bilayer system -- revisited: an unsupervised clustering algorithm analysis