We present an efficient scheme for representing many-body wave functions in quantum Monte Carlo (QMC) calculations. The scheme is based on B splines (blip functions), which consist of localized cubic splines centered on the points of a regular grid. We show that blip functions are unbiased, systematically improvable, and conveniently obtained from any standard plane-wave density functional theory (PW-DFT) code, and therefore provide a convenient and natural interface between PW-DFT and QMC calculations. We present tests on a 16-atom system of Si in the beta-tin structure, and on 2- and 8-atom systems of MgO in the NaCl structure. We show that already with such small systems the speed-up of blip functions with respect to plane waves is betwe...
We present a simple, robust, and highly efficient method for optimizing all parameters of many-body ...
We present a simple, robust, and highly efficient method for optimizing all parameters of many-body ...
We investigate the performance of a class of compact and systematically improvable Jastrow-Slater wa...
We present an efficient scheme for representing many-body wave functions in quantum Monte Carlo (QMC...
Quantum Monte Carlo methods are accurate and promising many body techniques for electronic structure...
Quantum Monte Carlo methods are accurate and promising many body techniques for electronic structure...
We propose a new class of multideterminantal Jastrow–Slater wave functions constructed with localize...
We propose a new class of multideterminantal Jastrow–Slater wave functions constructed with localize...
This thesis details four research projects related to zero temperature quantum Monte Carlo. Chapters...
We report a systematic analysis of the performance of a widely used set of Dirac-Fock pseudopotentia...
ABSTRACT: Quantum Monte Carlo methods are accurate and promising many body techniques for electronic...
Quantum Monte Carlo (QMC) methods have been found to give excellent results when applied to chemical...
An overview on recent technical aspects of ab-initio electronic structure calculations using Quantum...
41 pages, 21 figures, 3 tablesTurboRVB is a computational package for {\it ab initio} Quantum Monte ...
12siTurboRVB is a computational package for ab initio Quantum Monte Carlo (QMC) simulations of both ...
We present a simple, robust, and highly efficient method for optimizing all parameters of many-body ...
We present a simple, robust, and highly efficient method for optimizing all parameters of many-body ...
We investigate the performance of a class of compact and systematically improvable Jastrow-Slater wa...
We present an efficient scheme for representing many-body wave functions in quantum Monte Carlo (QMC...
Quantum Monte Carlo methods are accurate and promising many body techniques for electronic structure...
Quantum Monte Carlo methods are accurate and promising many body techniques for electronic structure...
We propose a new class of multideterminantal Jastrow–Slater wave functions constructed with localize...
We propose a new class of multideterminantal Jastrow–Slater wave functions constructed with localize...
This thesis details four research projects related to zero temperature quantum Monte Carlo. Chapters...
We report a systematic analysis of the performance of a widely used set of Dirac-Fock pseudopotentia...
ABSTRACT: Quantum Monte Carlo methods are accurate and promising many body techniques for electronic...
Quantum Monte Carlo (QMC) methods have been found to give excellent results when applied to chemical...
An overview on recent technical aspects of ab-initio electronic structure calculations using Quantum...
41 pages, 21 figures, 3 tablesTurboRVB is a computational package for {\it ab initio} Quantum Monte ...
12siTurboRVB is a computational package for ab initio Quantum Monte Carlo (QMC) simulations of both ...
We present a simple, robust, and highly efficient method for optimizing all parameters of many-body ...
We present a simple, robust, and highly efficient method for optimizing all parameters of many-body ...
We investigate the performance of a class of compact and systematically improvable Jastrow-Slater wa...