Abstract
We report on theoretical results that lend support to recent experimental observations suggesting the existence of a first-order liquid-liquid phase transformation (LLPT) in gallium. Using molecular dynamics simulation based on a modified embedded-atom model, we observe a transition from a high-density to a low-density liquid in the supercooled regime. The first-order character of the transition is established through the detection of the release of latent heat and our findings suggest that the LLPT terminates in a critical point that is located in the tensile-strained domain of the metastable phase diagram. © 2009 American Institute of Physics.
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CITATION STYLE
Jara, D. A. C., Fontana Michelon, M., Antonelli, A., & De Koning, M. (2009). Theoretical evidence for a first-order liquid-liquid phase transition in gallium. Journal of Chemical Physics, 130(22). https://doi.org/10.1063/1.3154424
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