High-throughput calculations based on density functional theory (DFT) methods have been widely implemented in the scientific community. However, depending on both the properties of interest as well as particular chemical/structural phase space, accuracy even for correct trends remains a key challenge for DFT. In this work, we evaluate the use of quantum Monte Carlo (QMC) to calculate material formation energies in a high-throughput environment. We test the performance of automated QMC calculations on 21 compounds with high quality reference data from the Committee on Data for Science and Technology (CODATA) thermodynamic database. We compare our approach to different DFT methods as well as different pseudopotentials, showing that errors in ...
We have developed a highly accurate computational capability to calculate the equation of state (EOS...
We implement the phaseless auxiliary field quantum Monte Carlo method using the plane-wave based pro...
The exact and phaseless variants of auxiliary-field quantum Monte Carlo (AFQMC) have been shown to b...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
peer reviewedComputer simulation plays a central role in modern-day materials science. The utility ...
We present a combination of a downfolding many-body approach with auxiliary-field quantum Monte Carl...
Various computational methods have been used to generate potential energy surfaces, which can help u...
Accurate first-principles calculations can provide valuable predictions for material-specific proper...
Accurately predicting the formation energy of a compound, which describes its thermodynamic stabilit...
a b s t r a c t The use of high-throughput density functional theory (DFT) calculations to screen fo...
Quantum Monte Carlo (QMC) is a computational technique that can be applied to the electronic Schrödi...
The goals of our research have been to: (i) expand the applicability of the quantum Monte Carlo (QM...
Two distinct types of Quantum Monte Carlo (QMC) calculations are applied to electronic structure pro...
We review the use of continuum quantum Monte Carlo (QMC) methods for the calculation of energy gaps ...
Quantum Monte Carlo (QMC) is one of the most promising methods for solving quantum many-body proble...
We have developed a highly accurate computational capability to calculate the equation of state (EOS...
We implement the phaseless auxiliary field quantum Monte Carlo method using the plane-wave based pro...
The exact and phaseless variants of auxiliary-field quantum Monte Carlo (AFQMC) have been shown to b...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
peer reviewedComputer simulation plays a central role in modern-day materials science. The utility ...
We present a combination of a downfolding many-body approach with auxiliary-field quantum Monte Carl...
Various computational methods have been used to generate potential energy surfaces, which can help u...
Accurate first-principles calculations can provide valuable predictions for material-specific proper...
Accurately predicting the formation energy of a compound, which describes its thermodynamic stabilit...
a b s t r a c t The use of high-throughput density functional theory (DFT) calculations to screen fo...
Quantum Monte Carlo (QMC) is a computational technique that can be applied to the electronic Schrödi...
The goals of our research have been to: (i) expand the applicability of the quantum Monte Carlo (QM...
Two distinct types of Quantum Monte Carlo (QMC) calculations are applied to electronic structure pro...
We review the use of continuum quantum Monte Carlo (QMC) methods for the calculation of energy gaps ...
Quantum Monte Carlo (QMC) is one of the most promising methods for solving quantum many-body proble...
We have developed a highly accurate computational capability to calculate the equation of state (EOS...
We implement the phaseless auxiliary field quantum Monte Carlo method using the plane-wave based pro...
The exact and phaseless variants of auxiliary-field quantum Monte Carlo (AFQMC) have been shown to b...