The auxiliary‐field quantum Monte Carlo (AFQMC) method provides a computational framework for solving the time‐independent Schrödinger equation in atoms, molecules, solids, and a variety of model systems. AFQMC has recently witnessed remarkable growth, especially as a tool for electronic structure computations in real materials. The method has demonstrated excellent accuracy across a variety of correlated electron systems. Taking the form of stochastic evolution in a manifold of nonorthogonal Slater determinants, the method resembles an ensemble of density‐functional theory (DFT) calculations in the presence of fluctuating external potentials. Its computational cost scales as a low‐power of system size, similar to the corresponding independ...
Determining the accurate structure of a material is a critical step in understanding its physics. St...
book chapter submitted to Comprehensive Computational ChemistryThe VB-QMC method is presented in thi...
Quantum Monte Carlo (QMC) is a stochastic method for solving the Schrödinger equation and has been s...
The auxiliary‐field quantum Monte Carlo (AFQMC) method provides a computational framework for solvin...
In Chap. 1 some of the most popular QMC methods, Variational Monte Carlo (VMC), Green's Function Mon...
We extend the recently introduced phaseless auxiliary-field quantum Monte Carlo (QMC) approach to an...
We present an ab initio auxiliary field quantum Monte Carlo method for studying the electronic struc...
Quantum Monte Carlo (QMC) methods have been found to give excellent results when applied to chemical...
Quantum Monte Carlo (QMC) is a computational technique that can be applied to the electronic Schrödi...
This book presents the basic theory and application of the Monte Carlo method to the electronic stru...
Quantum Monte Carlo (QMC) is one of the most promising methods for solving quantum many-body proble...
Describing correlated electron systems has been a major challenge in computational condensed-matter ...
Over the past two decades, continuum quantum Monte Carlo (QMC) has proved to be an invaluable tool f...
This thesis details four research projects related to zero temperature quantum Monte Carlo. Chapters...
In this thesis we investigate the recently developed Full Configuration Interaction Quantum Monte Ca...
Determining the accurate structure of a material is a critical step in understanding its physics. St...
book chapter submitted to Comprehensive Computational ChemistryThe VB-QMC method is presented in thi...
Quantum Monte Carlo (QMC) is a stochastic method for solving the Schrödinger equation and has been s...
The auxiliary‐field quantum Monte Carlo (AFQMC) method provides a computational framework for solvin...
In Chap. 1 some of the most popular QMC methods, Variational Monte Carlo (VMC), Green's Function Mon...
We extend the recently introduced phaseless auxiliary-field quantum Monte Carlo (QMC) approach to an...
We present an ab initio auxiliary field quantum Monte Carlo method for studying the electronic struc...
Quantum Monte Carlo (QMC) methods have been found to give excellent results when applied to chemical...
Quantum Monte Carlo (QMC) is a computational technique that can be applied to the electronic Schrödi...
This book presents the basic theory and application of the Monte Carlo method to the electronic stru...
Quantum Monte Carlo (QMC) is one of the most promising methods for solving quantum many-body proble...
Describing correlated electron systems has been a major challenge in computational condensed-matter ...
Over the past two decades, continuum quantum Monte Carlo (QMC) has proved to be an invaluable tool f...
This thesis details four research projects related to zero temperature quantum Monte Carlo. Chapters...
In this thesis we investigate the recently developed Full Configuration Interaction Quantum Monte Ca...
Determining the accurate structure of a material is a critical step in understanding its physics. St...
book chapter submitted to Comprehensive Computational ChemistryThe VB-QMC method is presented in thi...
Quantum Monte Carlo (QMC) is a stochastic method for solving the Schrödinger equation and has been s...