arXiv · cond-mat/0607660
Structural anomalies for a three dimensional isotropic core-softened potential
Abstract
Using molecular dynamics simulations we investigate the structure of a system of particles interacting through a continuous core-softened interparticle potential. We found for the translational order parameter, t, a local maximum at a density $ρ_{t-max}$ and a local minimum at $ρ_{t-min} > ρ_{t-max}$. Between $ρ_{t-max}$ and $ρ_{t-min}$, the $t$ parameter anomalously decreases upon pressure. For the orientational order parameter, $Q_6$, was observed a maximum at a density $ρ_{t-max}< ρ_{Qmax} < ρ_{t-min}$. For densities between $ρ_{Qmax}$ and $ρ_{t-min}$, both the translational (t) and orientational ($Q_6$) order parameters have anomalous behavior. We know that this system also exhibits density and diffusion anomaly. We found that the region in the pressure-temperature phase-diagram of the structural anomaly englobes the region of the diffusion anomaly that is larger than the region limited by the temperature of maximum density. This cascade of anomalies (structural, dynamic and thermodynamic) for our model has the same hierarchy of that one observed for the SPC/E water.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Alan B. de Oliveira, Paulo A. Netz, Thiago Colla, Marcia C. Barbosa. 2006-08-25. Structural anomalies for a three dimensional isotropic core-softened potential. https://doi.org/10.1063/1.2357119
Cite the original work for its findings. Save a collection to share your selection of sources.