Predicting the local dynamics of supercooled liquids based purely on local structure is a key challenge in our quest for understanding glassy materials. Recent years have seen an explosion of methods for making such a prediction, often via the application of increasingly complex machine learning techniques. The best predictions so far have involved so-called Graph Neural Networks (GNNs) whose accuracy comes at a cost of models that involve on the order of 105 fit parameters. In this Letter, we propose that the key structural ingredient to the GNN method is its ability to consider not only the local structure around a central particle, but also averaged structural features centered around nearby particles. We demonstrate that this insight ca...
We introduce a machine-learning approach to predict the complex non-Markovian dynamics of supercoole...
We introduce a machine-learning approach to predict the complex non-Markovian dynamics of supercoole...
The recent developments of machine learning have enabled accurate predictions of glassy dynamics. Ho...
Predicting the local dynamics of supercooled liquids based purely on local structure is a key challe...
Predicting the local dynamics of supercooled liquids based purely on local structure is a key challe...
Predicting the local dynamics of supercooled liquids based purely on local structure is a key challe...
Predicting the local dynamics of supercooled liquids based purely on local structure is a key challe...
Predicting the local dynamics of supercooled liquids based purely on local structure is a key challe...
In the quest to understand how structure and dynamics are connected in glasses, a number of machine ...
In the quest to understand how structure and dynamics are connected in glasses, a number of machine ...
In the quest to understand how structure and dynamics are connected in glasses, a number of machine ...
In the quest to understand how structure and dynamics are connected in glasses, a number of machine ...
Few questions in condensed matter science have proven as difficult to unravel as the interplay betwe...
Few questions in condensed matter science have proven as difficult to unravel as the interplay betwe...
Few questions in condensed matter science have proven as difficult to unravel as the interplay betwe...
We introduce a machine-learning approach to predict the complex non-Markovian dynamics of supercoole...
We introduce a machine-learning approach to predict the complex non-Markovian dynamics of supercoole...
The recent developments of machine learning have enabled accurate predictions of glassy dynamics. Ho...
Predicting the local dynamics of supercooled liquids based purely on local structure is a key challe...
Predicting the local dynamics of supercooled liquids based purely on local structure is a key challe...
Predicting the local dynamics of supercooled liquids based purely on local structure is a key challe...
Predicting the local dynamics of supercooled liquids based purely on local structure is a key challe...
Predicting the local dynamics of supercooled liquids based purely on local structure is a key challe...
In the quest to understand how structure and dynamics are connected in glasses, a number of machine ...
In the quest to understand how structure and dynamics are connected in glasses, a number of machine ...
In the quest to understand how structure and dynamics are connected in glasses, a number of machine ...
In the quest to understand how structure and dynamics are connected in glasses, a number of machine ...
Few questions in condensed matter science have proven as difficult to unravel as the interplay betwe...
Few questions in condensed matter science have proven as difficult to unravel as the interplay betwe...
Few questions in condensed matter science have proven as difficult to unravel as the interplay betwe...
We introduce a machine-learning approach to predict the complex non-Markovian dynamics of supercoole...
We introduce a machine-learning approach to predict the complex non-Markovian dynamics of supercoole...
The recent developments of machine learning have enabled accurate predictions of glassy dynamics. Ho...