The structure and stability of colloidal monolayers depend crucially on the effective pair potential u (r) between colloidal particles. In this paper, we develop a two-dimensional (2D) predictor-corrector method for extracting u (r) from the pair correlation function g (r) of dense colloidal monolayers. The method is based on an extension of the three-dimensional scheme of Rajagopalan and Rao [Phys. Rev. E 55, 4423 (1997)] to 2D by replacing the unknown bridge function B (r) with the hard-disk bridge function B d (r); the unknown hard-disk diameter d is then determined using an iterative scheme. We compare the accuracy of our predictor-corrector method to the conventional one-step inversion schemes of hypernetted chain closure (HNC) and Per...
We report a straightforward, model-free approach for measuring pair potentials from particle-coordin...
The inverse problem method is tested for a class of monomer-dimer statistical mechanics models th...
The files contain knots and coefficients of fourth order (cubic) B-spline representations approximat...
The structure and stability of colloidal monolayers depend crucially on the effective pair potential...
The structure and stability of colloidal monolayers depends crucially on the effective pair interact...
The structure and stability of colloidal monolayers depends crucially on the effective pair interact...
We use the Potential Distribution Theorem to evaluate distribution functions from equilibrium config...
We demonstrate that the pair potential V(r) in one-dimensional systems can be obtained analytically ...
We determine radial distribution functions for charge-stabilized colloidal suspensions for various v...
A method for measuring the pair interaction potential between colloidal particles by extrapolation m...
We demonstrate that the pair potential $V(r)$ in one-dimensional systems can be obtained analyticall...
Previously, we have proposed an approximation for the contact values of the radial distribution func...
The pair correlation function of charge-stabilized colloidal particles under strongly sheared condit...
In this work we present an efficient procedure to evaluate effective pair potentials, compatible wit...
We report a straightforward, model-free approach for measuring pair potentials from particle-coordin...
The inverse problem method is tested for a class of monomer-dimer statistical mechanics models th...
The files contain knots and coefficients of fourth order (cubic) B-spline representations approximat...
The structure and stability of colloidal monolayers depend crucially on the effective pair potential...
The structure and stability of colloidal monolayers depends crucially on the effective pair interact...
The structure and stability of colloidal monolayers depends crucially on the effective pair interact...
We use the Potential Distribution Theorem to evaluate distribution functions from equilibrium config...
We demonstrate that the pair potential V(r) in one-dimensional systems can be obtained analytically ...
We determine radial distribution functions for charge-stabilized colloidal suspensions for various v...
A method for measuring the pair interaction potential between colloidal particles by extrapolation m...
We demonstrate that the pair potential $V(r)$ in one-dimensional systems can be obtained analyticall...
Previously, we have proposed an approximation for the contact values of the radial distribution func...
The pair correlation function of charge-stabilized colloidal particles under strongly sheared condit...
In this work we present an efficient procedure to evaluate effective pair potentials, compatible wit...
We report a straightforward, model-free approach for measuring pair potentials from particle-coordin...
The inverse problem method is tested for a class of monomer-dimer statistical mechanics models th...
The files contain knots and coefficients of fourth order (cubic) B-spline representations approximat...