Saturation of Electrostatic Potential: Exactly Solvable 2D Coulomb Models
نویسنده
چکیده
We test the concepts of renormalized charge and potential saturation, introduced within the framework of highly asymmetric Coulomb mixtures, on exactly solvable Coulomb models. The object of study is the average electrostatic potential induced by a unique “guest” charge immersed in a classical electrolyte, the whole system being in thermal equilibrium at some inverse temperature β. The guest charge is considered to be either an infinite hard wall carrying a uniform surface charge or a charged colloidal particle. The systems are treated as two-dimensional; the electrolyte is modelled by a symmetric twocomponent plasma of point-like ±e charges with logarithmic Coulomb interactions. Two cases are solved exactly: the Debye-Hückel limit βe → 0 and the Thirring free-fermion point βe = 2. The results at the free-fermion point can be summarized as follows: (i) The induced electrostatic potential exhibits the asymptotic behavior, at large distances from the guest charge, whose form is different from that obtained in the Debye-Hückel (linear Poisson-Boltzmann) theory. This means that the concept of renormalized charge, developed within the nonlinear Poisson-Boltzmann theory to describe the screening effect of the electrolyte cloud, fails at the free-fermion point. (ii) In the limit of an infinite bare charge, the induced electrostatic potential saturates at a finite value in every point of the electrolyte region. This fact confirms the previously proposed hypothesis of potential saturation.
منابع مشابه
Is the Two-Dimensional One-Component Plasma Exactly Solvable?
The model under consideration is the two-dimensional (2D) one-component plasma of pointlike charged particles in a uniform neutralizing background, interacting through the logarithmic Coulomb interaction. Classical equilibrium statistical mechanics is studied by non-traditional means. The question of the potential integrability (exact solvability) of the plasma is investigated, first at arbitra...
متن کاملExactly solvable model of the 2D electrical double layer
We consider equilibrium statistical mechanics of a simplified model for the ideal conductor electrode in an interface contact with a classical semi-infinite electrolyte, modeled by the twodimensional Coulomb gas of pointlike ± unit charges in the stability-against-collapse regime of reduced inverse temperatures 0 ≤ β < 2. If there is a potential difference between the bulk interior of the elect...
متن کاملTwo-dimensional Coulomb Systems in a disk with Ideal Dielectric Boundaries
We consider two-dimensional Coulomb systems confined in a disk with ideal dielectric boundaries. In particular we study the two-component plasma in detail. When the coulombic coupling constant Γ = 2 the model is exactly solvable. We compute the grand-potential, densities and correlations. We show that the grand-potential has a universal logarithmic finite-size correction as predicted in previou...
متن کاملQuasi-exact Solvability of Planar Dirac Electron in Coulomb and Magnetic Fields
The Dirac equation for an electron in two spatial dimensions in the Coulomb and homogeneous magnetic fields is a physical example of quasi-exactly solvable systems. This model, however, does not belong to the classes based on the algebra sl(2) which underlies most one-dimensional and effectively one-dimensional quasi-exactly solvable systems. In this paper we demonstrate that the quasi-exactly ...
متن کاملOn the exactly-solvable pairing models for bosons.
On the exactly-solvable pairing models for bosons. Abstract We propose the new exactly solvable pairing model for bosons corresponding to the attractive pairing interaction. Using the electrostatic analogy, the solution of this model in thermodynamic limit is found. The transition from the superfluid phase with the Bose condensate and the Bogoliubov-type spectrum of excitations in the weak coup...
متن کامل