Density functional theory (DFT) embedding provides a formally exact framework for interfacing correlated wave-function theory (WFT) methods with lower-level descriptions of electronic structure. Here, we report techniques to improve the accuracy and stability of WFT-in-DFT embedding calculations. In particular, we develop spin-dependent embedding potentials in both restricted and unrestricted orbital formulations to enable WFT-in-DFT embedding for open-shell systems, and develop an orbital-occupation-freezing technique to improve the convergence of optimized effective potential calculations that arise in the evaluation of the embedding potential. The new techniques are demonstrated in applications to the van-der-Waals-bound ethylene-propyle...
Embedded density functional theory (e-DFT) is used to describe the electronic structure of strongly ...
In the present work, we introduce a self-consistent density-functional embedding technique, which le...
Density functional theory (DFT) provides a formally exact framework for quantum embedding. The appea...
Density functional theory (DFT) embedding provides a formally exact framework for interfacing correl...
Methods that exploit the intrinsic locality of molecular interactions show significant promise in ma...
We analyze the sources of error in quantum embedding calculations in which an active subsystem is tr...
We analyze the sources of error in quantum embedding calculations in which an active subsystem is tr...
Complex chemical systems present challenges to electronic structure theory stemming from large syste...
Electrons in zero external magnetic field can be studied with the Kohn–Sham (KS) scheme of either de...
Complex chemical systems present challenges to electronic structure theory stemming from large syste...
Projection-based embedding provides a simple and numerically robust framework for multiscale wavefun...
Projection-based embedding provides a simple and numerically robust framework for multiscale wavefun...
Since its inception, the widespread use of density functional theory (DFT) as a cost-effective tool ...
Embedded density functional theory (e-DFT) is used to describe the electronic structure of strongly ...
The accurate description of open-shell molecules, in particular of transition metal complexes and cl...
Embedded density functional theory (e-DFT) is used to describe the electronic structure of strongly ...
In the present work, we introduce a self-consistent density-functional embedding technique, which le...
Density functional theory (DFT) provides a formally exact framework for quantum embedding. The appea...
Density functional theory (DFT) embedding provides a formally exact framework for interfacing correl...
Methods that exploit the intrinsic locality of molecular interactions show significant promise in ma...
We analyze the sources of error in quantum embedding calculations in which an active subsystem is tr...
We analyze the sources of error in quantum embedding calculations in which an active subsystem is tr...
Complex chemical systems present challenges to electronic structure theory stemming from large syste...
Electrons in zero external magnetic field can be studied with the Kohn–Sham (KS) scheme of either de...
Complex chemical systems present challenges to electronic structure theory stemming from large syste...
Projection-based embedding provides a simple and numerically robust framework for multiscale wavefun...
Projection-based embedding provides a simple and numerically robust framework for multiscale wavefun...
Since its inception, the widespread use of density functional theory (DFT) as a cost-effective tool ...
Embedded density functional theory (e-DFT) is used to describe the electronic structure of strongly ...
The accurate description of open-shell molecules, in particular of transition metal complexes and cl...
Embedded density functional theory (e-DFT) is used to describe the electronic structure of strongly ...
In the present work, we introduce a self-consistent density-functional embedding technique, which le...
Density functional theory (DFT) provides a formally exact framework for quantum embedding. The appea...