International audienceAn efficient real space method is derived for the evaluation of the Madelung's potential of ionic crystals. The proposed method is an extension of the Evjen's method. It takes advantage of a general analysis for the potential convergence in real space. Indeed, we show that the series convergence is exponential as a function of the number of annulled multipolar momenta in the unit cell. The method proposed in this work reaches such an exponential convergence rate. Its efficiency is comparable to the Ewald's method, however unlike the latter, it uses only simple algebraic functions
We present a novel numerical method for solving the elliptic partial differential equation problem f...
An N⋅log(N) method for evaluating electrostatic energies and forces of large periodic systems is pre...
International audienceWe present a new method for calculating electrostatic interactions in periodic...
International audienceAn efficient real space method is derived for the evaluation of the Madelung's...
Electrostatic potentials in ionic crystals have been calculated with direct summation of the Coulomb...
Journal ArticleLattice sums for the electrostatic interactions in ionic crystals, first evaluated by...
A simple method for the self-consistent calculation of the atomic charges and Madelung potentials in...
In this work we deal with the electrostatic potential generated by a periodical system of charges in...
A simple algorithm and a computational program to numerically compute the electric field gradient an...
The classic Madelung problem is cast into an absolutely convergent form that is readily evaluated by...
We tested the isotropic periodic sum (IPS) method for computing Madelung energies of ionic crystals....
Consider N layers of a NaCl-type ionic lattice such that in every layer one has an infinite square l...
A method to calculate the electrostatic field strength in ionic crystals is evaluated according to a...
We present three new families of fast algorithms for classical potential theory, based on Ewald summ...
Room temperature ionic liquid calculations require extensive sampling due to the large degree of loc...
We present a novel numerical method for solving the elliptic partial differential equation problem f...
An N⋅log(N) method for evaluating electrostatic energies and forces of large periodic systems is pre...
International audienceWe present a new method for calculating electrostatic interactions in periodic...
International audienceAn efficient real space method is derived for the evaluation of the Madelung's...
Electrostatic potentials in ionic crystals have been calculated with direct summation of the Coulomb...
Journal ArticleLattice sums for the electrostatic interactions in ionic crystals, first evaluated by...
A simple method for the self-consistent calculation of the atomic charges and Madelung potentials in...
In this work we deal with the electrostatic potential generated by a periodical system of charges in...
A simple algorithm and a computational program to numerically compute the electric field gradient an...
The classic Madelung problem is cast into an absolutely convergent form that is readily evaluated by...
We tested the isotropic periodic sum (IPS) method for computing Madelung energies of ionic crystals....
Consider N layers of a NaCl-type ionic lattice such that in every layer one has an infinite square l...
A method to calculate the electrostatic field strength in ionic crystals is evaluated according to a...
We present three new families of fast algorithms for classical potential theory, based on Ewald summ...
Room temperature ionic liquid calculations require extensive sampling due to the large degree of loc...
We present a novel numerical method for solving the elliptic partial differential equation problem f...
An N⋅log(N) method for evaluating electrostatic energies and forces of large periodic systems is pre...
International audienceWe present a new method for calculating electrostatic interactions in periodic...