The use of Δ-self-consistent field (SCF) approaches for studying excited electronic states has received a renewed interest in recent years. In this work, the use of this scheme for calculating excited-state vibrational frequencies is examined. Results from Δ-SCF calculations for a set of representative molecules are compared with those obtained using configuration interaction with single substitutions (CIS) and time-dependent density functional theory (TD-DFT) methods. The use of an approximate spin purification model is also considered for cases where the excited-state SCF solution is spin-contaminated. The results of this work demonstrate that an SCF-based description of an excited-state potential energy surface can be an accurate and cos...
The mean-field solns. of electronic excited states are much less accessible than ground state (e.g.,...
A procedure for the calculation of spin–orbit coupling (SOC) at the delta self-consistent field (ΔSC...
The mean-field solns. of electronic excited states are much less accessible than ground state (e.g.,...
The use of Δ-self-consistent field (SCF) approaches for studying excited electronic states has recei...
The use of $\Delta$SCF methods has a rich history in the computational study of electronic excited s...
The accuracy of excited states calculated with Kohn-Sham density functional theory using the maximum...
The accuracy of excited states calculated with Kohn-Sham density functional theory using the maximum...
We present an implementation of energies and gradients for the ΔDFTB method, an analogue of Δ-self-c...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).We present a modification of...
Thesis (Ph.D.)--University of Washington, 2016-06The microscopic and molecular-level characterizatio...
Thesis (Ph.D.)--University of Washington, 2016-06The microscopic and molecular-level characterizatio...
Fully self-consistent mean-field solutions of electronic excited states have been much less accessib...
A spin-adapted configuration interaction with singles method that is based on a restricted open-shel...
The development of variational density functional theory approaches to excited electronic states is ...
We present a new approach to calculating potential energy surfaces for photochemical reactions by co...
The mean-field solns. of electronic excited states are much less accessible than ground state (e.g.,...
A procedure for the calculation of spin–orbit coupling (SOC) at the delta self-consistent field (ΔSC...
The mean-field solns. of electronic excited states are much less accessible than ground state (e.g.,...
The use of Δ-self-consistent field (SCF) approaches for studying excited electronic states has recei...
The use of $\Delta$SCF methods has a rich history in the computational study of electronic excited s...
The accuracy of excited states calculated with Kohn-Sham density functional theory using the maximum...
The accuracy of excited states calculated with Kohn-Sham density functional theory using the maximum...
We present an implementation of energies and gradients for the ΔDFTB method, an analogue of Δ-self-c...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).We present a modification of...
Thesis (Ph.D.)--University of Washington, 2016-06The microscopic and molecular-level characterizatio...
Thesis (Ph.D.)--University of Washington, 2016-06The microscopic and molecular-level characterizatio...
Fully self-consistent mean-field solutions of electronic excited states have been much less accessib...
A spin-adapted configuration interaction with singles method that is based on a restricted open-shel...
The development of variational density functional theory approaches to excited electronic states is ...
We present a new approach to calculating potential energy surfaces for photochemical reactions by co...
The mean-field solns. of electronic excited states are much less accessible than ground state (e.g.,...
A procedure for the calculation of spin–orbit coupling (SOC) at the delta self-consistent field (ΔSC...
The mean-field solns. of electronic excited states are much less accessible than ground state (e.g.,...