The electronic charge density plays a central role in determining the behavior of matter at the atomic scale, but its computational evaluation requires demanding electronic-structure calculations. We introduce an atom-centered, symmetry-adapted framework to machine-learn the valence charge density based on a small number of reference calculations. The model is highly transferable, meaning it can be trained on electronic-structure data of small molecules and used to predict the charge density of larger compounds with low, linear-scaling cost. Applications are shown for various hydrocarbon molecules of increasing complexity and flexibility, and demonstrate the accuracy of the model when predicting the density on octane and octatetraene after ...
The combination of modern scientific computing with electronic structure theory can lead to an unpre...
Partial atomic charge assignment is of immense practical value to force field parametrization, molec...
The combination of modern scientific computing with electronic structure theory can lead to an unpre...
We introduce an atom-centered, symmetry-adapted framework to machine-learn the valence charge densit...
The electronic charge density plays a central role in determining the behavior of matter at the atom...
The electron density of a molecule or material has recently received major attention as a target qua...
An outstanding challenge in chemical computation is the many-electron problem where computational me...
The ability to accurately and efficiently compute quantum-mechanical partial atomistic charges has m...
The ability to accurately and efficiently compute quantum-mechanical partial atomistic charges has m...
Parametrization of small organic molecules for classical molecular dynamics simulations is not trivi...
Machine-learning in quantum chemistry is currently booming, with reported applications spanning all ...
Parametrization of small organic molecules for classical molecular dynamics simulations is not trivi...
Parametrization of small organic molecules for classical molecular dynamics simulations is not trivi...
According to density functional theory, any chemical property can be inferred from the electron dens...
Analytic Electron Density Representation for Electron Density Learning Electron density learning is...
The combination of modern scientific computing with electronic structure theory can lead to an unpre...
Partial atomic charge assignment is of immense practical value to force field parametrization, molec...
The combination of modern scientific computing with electronic structure theory can lead to an unpre...
We introduce an atom-centered, symmetry-adapted framework to machine-learn the valence charge densit...
The electronic charge density plays a central role in determining the behavior of matter at the atom...
The electron density of a molecule or material has recently received major attention as a target qua...
An outstanding challenge in chemical computation is the many-electron problem where computational me...
The ability to accurately and efficiently compute quantum-mechanical partial atomistic charges has m...
The ability to accurately and efficiently compute quantum-mechanical partial atomistic charges has m...
Parametrization of small organic molecules for classical molecular dynamics simulations is not trivi...
Machine-learning in quantum chemistry is currently booming, with reported applications spanning all ...
Parametrization of small organic molecules for classical molecular dynamics simulations is not trivi...
Parametrization of small organic molecules for classical molecular dynamics simulations is not trivi...
According to density functional theory, any chemical property can be inferred from the electron dens...
Analytic Electron Density Representation for Electron Density Learning Electron density learning is...
The combination of modern scientific computing with electronic structure theory can lead to an unpre...
Partial atomic charge assignment is of immense practical value to force field parametrization, molec...
The combination of modern scientific computing with electronic structure theory can lead to an unpre...