Accurate ab-initio prediction of electronic energies is very expensive for macromolecules by explicitly solving post-Hartree-Fock equations. We here exploit the physically justified local correlation feature in compact basis of small molecules, and construct an expressive low-data deep neural network (dNN) model to obtain machine-learned electron correlation energies on par with MP2 and CCSD levels of theory for more complex molecules and different datasets that are not represented in the training set. We show that our dNN-powered model is data efficient and makes highly transferable prediction across alkanes of various lengths, organic molecules with non-covalent and biomolecular interactions, as well as water clusters of different sizes a...
Chemically accurate and comprehensive studies of the virtual space of all possible molecules are sev...
Given access to accurate solutions of the many-electron Schr\"odinger equation, nearly all chemistry...
Chemically accurate and comprehensive studies of the virtual space of all possible molecules are sev...
Accurate ab-initio prediction of electronic energies is very expensive for macromolecules by explici...
We present a machine learning (ML) method for predicting electronic structure correlation energies u...
A proper treatment of electron correlation effects is indispensable for accurate simulation of compo...
A proper treatment of electron correlation effects is indispensable for accurate simulation of compo...
We address the degree to which machine learning (ML) can be used to accurately and transferably pred...
A proper treatment of electron correlation effects is indispensable for accurate simulation of compo...
We introduce machine learning models of quantum mechanical observables of atoms in molecules. Instan...
Chemically accurate and comprehensive studies of the virtual space of all possible molecules are sev...
The discovery of molecules with specific properties is crucial to developing effective materials and...
We present a machine learning (ML) method for predicting electronic structure correlation energies u...
Chemically accurate and comprehensive studies of the virtual space of all possible molecules are sev...
We present a machine learning (ML) method for predicting electronic structure correlation energies u...
Chemically accurate and comprehensive studies of the virtual space of all possible molecules are sev...
Given access to accurate solutions of the many-electron Schr\"odinger equation, nearly all chemistry...
Chemically accurate and comprehensive studies of the virtual space of all possible molecules are sev...
Accurate ab-initio prediction of electronic energies is very expensive for macromolecules by explici...
We present a machine learning (ML) method for predicting electronic structure correlation energies u...
A proper treatment of electron correlation effects is indispensable for accurate simulation of compo...
A proper treatment of electron correlation effects is indispensable for accurate simulation of compo...
We address the degree to which machine learning (ML) can be used to accurately and transferably pred...
A proper treatment of electron correlation effects is indispensable for accurate simulation of compo...
We introduce machine learning models of quantum mechanical observables of atoms in molecules. Instan...
Chemically accurate and comprehensive studies of the virtual space of all possible molecules are sev...
The discovery of molecules with specific properties is crucial to developing effective materials and...
We present a machine learning (ML) method for predicting electronic structure correlation energies u...
Chemically accurate and comprehensive studies of the virtual space of all possible molecules are sev...
We present a machine learning (ML) method for predicting electronic structure correlation energies u...
Chemically accurate and comprehensive studies of the virtual space of all possible molecules are sev...
Given access to accurate solutions of the many-electron Schr\"odinger equation, nearly all chemistry...
Chemically accurate and comprehensive studies of the virtual space of all possible molecules are sev...