SearcharxivSearch

arXiv subjects

Mehrdad Khanpour

Publications and source records attributed to Mehrdad Khanpour.

2 recordsLinked to original sources

Gravitational Merging as a Possible Source for the Cosmological Accelerating

Gravitational merging (or clustering) of cosmic objects is regarded as a possible source of the extra-acceleration of the universe at large scale. The merging/clustering of cosmic objects introduces a correction term in the equation of state for the effective present cosmic fluid in the form of $P=wρ+bρ^2$. As a result, an alternative relation for the energy density includes over and under-dense regions is obtained that coincide with the conventional relation in the standard limit. By analogy with bubbles, the under-dense regions (voids) in the cosmic fluid is shown to provide the needed negative pressure. Invoking the observational constraint for the dark energy equation of state $w$, we show that the merging of voids will act as a possible source of extra-accelerating at large scale in comparison with non-merging cosmic gas.

astro-ph.CO

Towards a New Perturbation Theory of Molecular Liquids

First steps towards developing a new perturbation theory for molecular liquids are taken. By choosing a new form of splitting the site-site potential functions between molecules, we will get a set of atomic fluids as the reference system with known structure and thermodynamics. The perturbative part of the potential function is then expanded up to two terms. The excess Helmholtz free energy of the system is then obtained for three computable contributions. The derivation shows that the excess Helmholtz free energy has nothing to do with intra-atomic potentials, all contributions come merely from inter-atomic potentials. Then it is applied to compute the thermodynamics of two systems; hard sphere chain and carbon dioxide molecular fluids. The results compared with the computer simulation data show that the theory works well at low densities.

physics.chem-ph