arXiv · 1004.2538
A simple monatomic ideal glass former: the glass transition by a first-order phase transition above the melting point
Abstract
A liquid can form under cooling a glassy state either as a result of a continuous slowing down or by a first order polyamorphous phase transition. The second scenario has so far always been observed below the melting point where it interfered with crystalline nucleation. We report the first observation of the liquid-glass transition by a first order phase transition above the melting point. The observation was made in a molecular dynamics simulation of a one-component system with a model metallic pair potential. This is also the first observation of a simple monatomic ideal glass former -- a liquid that avoids crystallization at any cooling rate. Besides its conceptual importance, this result indicates a possibility of existence of metallic ideal glass formers.
Explore related subjects
Keep this discovery
Måns Elenius, Tomas Oppelstrup, Mikhail Dzugutov. 2010-04-15. A simple monatomic ideal glass former: the glass transition by a first-order phase transition above the melting point. https://arxiv.org/abs/1004.2538
Cite the original work for its findings. Save a collection to share your selection of sources.