Interatomic Core Forces Deduced From Observed Liquid Structure Factors
- 1 April 1984
- journal article
- research article
- Published by Taylor & Francis in Physics and Chemistry of Liquids
- Vol. 13 (4) , 293-311
- https://doi.org/10.1080/00319108408080788
Abstract
A simplified version of the WCA theory allows us to start from an observed structure factor and derive a core potential and gradient at an effective collision diameter. The quality of fit and internal consistency checks indicate that the method works for liquids of inert gases, certain simple metals and the noble metals. It is less accurate, although still useful, for transition metals and lanthanides. In the latter case, there is a peaking in core diameter at Eu(4f76s2) as the series is traversed. This has no counterpart in the transition metal series which shows a steady decrease (although with an anomalously small value for Cr(3d54s1)).Keywords
This publication has 11 references indexed in Scilit:
- Soft Sphere Characterisation from Liquid Structure Factors; Application to LeadPhysics and Chemistry of Liquids, 1981
- A simplified WCA theory of liquid structureChemical Physics, 1980
- Liquid metals with structure factor shouldersPhysics Letters A, 1976
- The repulsive part of the effective interatomic potential for liquid metalsChemical Physics, 1975
- Structure Factor and Radial Distribution Function for Liquid Argon at 85 °KPhysical Review A, 1973
- Equilibrium Theory of Simple LiquidsPhysical Review A, 1972
- Structure Study of Liquid Neon by Neutron DiffractionThe Journal of Chemical Physics, 1971
- Role of Repulsive Forces in Determining the Equilibrium Structure of Simple LiquidsThe Journal of Chemical Physics, 1971
- Structure of Binary Liquid Mixtures. IPhysical Review B, 1967
- Equation of State for Hard SpheresThe Journal of Chemical Physics, 1963