Linear-scaling implementations of density functional theory (DFT) reach their intended efficiency regime only when applied to systems having a physical size larger than the range of their Kohn–Sham density matrix (DM). This causes a problem since many types of large systems of interest have a rather broad DM range and are therefore not amenable to analysis using DFT methods. For this reason, the recently proposed stochastic DFT (sDFT), avoiding exhaustive DM evaluations, is emerging as an attractive alternative linear-scaling approach. This review develops a general formulation of sDFT in terms of a (non)orthogonal basis representation and offers an analysis of the statistical errors (SEs) involved in the calculation. Using a new Gaussian-t...
We develop a formalism for calculating forces on the nuclei within the linear-scaling stochastic den...
We review a suite of stochastic vector computational approaches for studying the electronic structur...
Electronic structure theory has become a powerful predictive tool in chemistry. Results from calcula...
We develop a method in which the electronic densities of small fragments determined by Kohn-Sham den...
The stochastic density functional theory (DFT) [R. Baer et al., Phys. Rev. Lett. 111, 106402 (2013)]...
Stochastic density functional theory (sDFT) is becoming a valuable tool for studying ground-state pr...
Stochastic density functional theory (sDFT) is becoming a valuable tool for studying ground-state pr...
Linear scaling density functional theory is important for understanding electronic structure propert...
The stochastic density functional theory (DFT) [R. Baer et al., Phys. Rev. Lett. 111, 106402 (2013)]...
Over this past decade, we combined the idea of stochastic resolution of identity with a variety of e...
We introduce a tempering approach with stochastic density functional theory (sDFT), labeled t-sDFT, ...
Over this past decade, we combined the idea of stochastic resolution of identity with a variety of e...
Linear-scaling techniques for Kohn-Sham density functional theory (KS-DFT) are essential to describe...
We develop a stochastic formulation of the optimally tuned range-separated hybrid density functional...
We develop a formalism for calculating forces on the nuclei within the linear-scaling stochastic den...
We develop a formalism for calculating forces on the nuclei within the linear-scaling stochastic den...
We review a suite of stochastic vector computational approaches for studying the electronic structur...
Electronic structure theory has become a powerful predictive tool in chemistry. Results from calcula...
We develop a method in which the electronic densities of small fragments determined by Kohn-Sham den...
The stochastic density functional theory (DFT) [R. Baer et al., Phys. Rev. Lett. 111, 106402 (2013)]...
Stochastic density functional theory (sDFT) is becoming a valuable tool for studying ground-state pr...
Stochastic density functional theory (sDFT) is becoming a valuable tool for studying ground-state pr...
Linear scaling density functional theory is important for understanding electronic structure propert...
The stochastic density functional theory (DFT) [R. Baer et al., Phys. Rev. Lett. 111, 106402 (2013)]...
Over this past decade, we combined the idea of stochastic resolution of identity with a variety of e...
We introduce a tempering approach with stochastic density functional theory (sDFT), labeled t-sDFT, ...
Over this past decade, we combined the idea of stochastic resolution of identity with a variety of e...
Linear-scaling techniques for Kohn-Sham density functional theory (KS-DFT) are essential to describe...
We develop a stochastic formulation of the optimally tuned range-separated hybrid density functional...
We develop a formalism for calculating forces on the nuclei within the linear-scaling stochastic den...
We develop a formalism for calculating forces on the nuclei within the linear-scaling stochastic den...
We review a suite of stochastic vector computational approaches for studying the electronic structur...
Electronic structure theory has become a powerful predictive tool in chemistry. Results from calcula...