A density functional theory for the bulk phase diagram of two-dimensional orientable hard rods is proposed and tested against Monte Carlo computer simulation data. In detail, an explicit density functional is derived from fundamental mixed measure theory and freely minimized numerically for hard discorectangles. The phase diagram, which involves stable isotropic, nematic, smectic, and crystalline phases, is obtained and shows good agreement with the simulation data. Our functional is valid for a multicomponent mixture of hard particles with arbitrary convex shapes and provides a reliable starting point to explore various inhomogeneous situations of two-dimensional hard rods and their Brownian dynamics
A study of the freezing properties of simple liquids composed of hard and soft spheres is performed ...
Lattice Density Functional Theory is a powerful method to treat equilibrium structural properties an...
This is the publisher's version, also available electronically from http://scitation.aip.org/content...
Density functional theory (DFT) for hard bodies provides a theoretical description of the effect of...
To the memory of our friend Yasha Rosenfeld, who discovered the Fundamental Measure Theory, making t...
95 pages, 21 figures.-- Chapter in "Theory and Simulation of Hard-Sphere Fluids and Related Systems"...
8 pages, 5 figures.-- PACS nrs.: 61.30.-v, 64.70.mf, 64.30.Jk, 65.20.Jk.-- ArXiv pre-print available...
We present a scaled particle density functional study of two-dimensional binary mixtures of hard con...
Two-dimensional hard-particle systems are rather easy to simulate but surprisingly difficult to trea...
Monte Carlo simulations are used to study two-dimensional hard rod fluids consisting of spherocylin...
A fluid of hard right isosceles triangles was studied using an extension of scaled-particle density-...
peer reviewedThe equilibrium properties of hard rod monolayers are investigated in a lattice model (...
We use the density-functional formalism, in particular the scaled-particle theory, applied to a leng...
8 pages, 7 figures.-- PACS nrs.: 64.70.Md, 64.60.My.-- ArXiv pre-print available at: http://arxiv.or...
A study of the freezing properties of simple liquids composed of hard and soft spheres is performed ...
Lattice Density Functional Theory is a powerful method to treat equilibrium structural properties an...
This is the publisher's version, also available electronically from http://scitation.aip.org/content...
Density functional theory (DFT) for hard bodies provides a theoretical description of the effect of...
To the memory of our friend Yasha Rosenfeld, who discovered the Fundamental Measure Theory, making t...
95 pages, 21 figures.-- Chapter in "Theory and Simulation of Hard-Sphere Fluids and Related Systems"...
8 pages, 5 figures.-- PACS nrs.: 61.30.-v, 64.70.mf, 64.30.Jk, 65.20.Jk.-- ArXiv pre-print available...
We present a scaled particle density functional study of two-dimensional binary mixtures of hard con...
Two-dimensional hard-particle systems are rather easy to simulate but surprisingly difficult to trea...
Monte Carlo simulations are used to study two-dimensional hard rod fluids consisting of spherocylin...
A fluid of hard right isosceles triangles was studied using an extension of scaled-particle density-...
peer reviewedThe equilibrium properties of hard rod monolayers are investigated in a lattice model (...
We use the density-functional formalism, in particular the scaled-particle theory, applied to a leng...
8 pages, 7 figures.-- PACS nrs.: 64.70.Md, 64.60.My.-- ArXiv pre-print available at: http://arxiv.or...
A study of the freezing properties of simple liquids composed of hard and soft spheres is performed ...
Lattice Density Functional Theory is a powerful method to treat equilibrium structural properties an...
This is the publisher's version, also available electronically from http://scitation.aip.org/content...