Two-component Gaussian core model : strong-coupling limit, Bjerrum pairs, and gas-liquid phase transition
View/ Open
Date
2018Type
Abstract
In the present work, we investigate a gas-liquid transition in a two-component Gaussian core model, where particles of the same species repel and those of different species attract. Unlike a similar transition in a one-component system with particles having attractive interactions at long separations and repulsive interactions at short separations, a transition in the two-component system is not driven solely by interactions but by a specific feature of the interactions, the correlations. This ...
In the present work, we investigate a gas-liquid transition in a two-component Gaussian core model, where particles of the same species repel and those of different species attract. Unlike a similar transition in a one-component system with particles having attractive interactions at long separations and repulsive interactions at short separations, a transition in the two-component system is not driven solely by interactions but by a specific feature of the interactions, the correlations. This leads to extremely low critical temperature, as correlations are dominant in the strong-coupling limit. By carrying out various approximations based on standard liquid-state methods, we show that a gasliquid transition of the two-component system poses a challenging theoretical problem. ...
In
The journal of chemical physics. New York. Vol. 148, no. 2 (Jan. 2018), 024904, 8 p.
Source
Foreign
Collections
-
Journal Articles (40281)Exact and Earth Sciences (6158)
This item is licensed under a Creative Commons License