Many multiconfigurational systems, such as single-molecule magnets, are difficult to study using traditional computational methods due to the simultaneous existence of both spin and spatial degeneracies. In this work, a new approach termed n-spin-flip ionization potential/electron affinity (nSF-IP or nSF-EA) is introduced which combines the spin-flip method of Anna Krylov with particle-number changing IP/EA methods. We demonstrate the efficacy of the approach by applying it to the strongly correlated N2+, as well as several double exchange systems. We also demonstrate that when these systems are well-described by a double exchange model Hamiltonian, only 1SF-IP/EA is required to extract the double exchange parameters and accurately predict ...
We present a modification of the recently developed Restricted Active Space with n Spin Flips method...
We report an implementation of a spin-flip variant of the second-order approximate coupled-cluster s...
We present a modification of the recently developed Restricted Active Space with n Spin Flips method...
Many multiconfigurational systems, such as single-molecule magnets, are difficult to study using tra...
Many multiconfigurational systems, such as single-molecule magnets, are difficult to study using tra...
Many multiconfigurational systems, such as single-molecule magnets, are difficult to study using tra...
Many multiconfigurational systems, such as single-molecule magnets, are difficult to study using tra...
Many multiconfigurational systems, such as single-molecule magnets, are difficult to study using tra...
Many multiconfigurational systems, such as single-molecule magnets, are difficult to study using tra...
Many multiconfigurational systems, such as single-molecule magnets, are difficult to study using tra...
Many multiconfigurational systems, such as single-molecule magnets, are difficult to study using tra...
An approximation to the spin-flip extended configuration interaction singles method is developed usi...
An approximation to the spin-flip extended configuration interaction singles method is developed usi...
The spin-flip (SF) approach to multireference situations (e.g., bond breaking, diradicals, and trira...
The spin-flip (SF) approach to multireference situations (e.g., bond breaking, diradicals, and trira...
We present a modification of the recently developed Restricted Active Space with n Spin Flips method...
We report an implementation of a spin-flip variant of the second-order approximate coupled-cluster s...
We present a modification of the recently developed Restricted Active Space with n Spin Flips method...
Many multiconfigurational systems, such as single-molecule magnets, are difficult to study using tra...
Many multiconfigurational systems, such as single-molecule magnets, are difficult to study using tra...
Many multiconfigurational systems, such as single-molecule magnets, are difficult to study using tra...
Many multiconfigurational systems, such as single-molecule magnets, are difficult to study using tra...
Many multiconfigurational systems, such as single-molecule magnets, are difficult to study using tra...
Many multiconfigurational systems, such as single-molecule magnets, are difficult to study using tra...
Many multiconfigurational systems, such as single-molecule magnets, are difficult to study using tra...
Many multiconfigurational systems, such as single-molecule magnets, are difficult to study using tra...
An approximation to the spin-flip extended configuration interaction singles method is developed usi...
An approximation to the spin-flip extended configuration interaction singles method is developed usi...
The spin-flip (SF) approach to multireference situations (e.g., bond breaking, diradicals, and trira...
The spin-flip (SF) approach to multireference situations (e.g., bond breaking, diradicals, and trira...
We present a modification of the recently developed Restricted Active Space with n Spin Flips method...
We report an implementation of a spin-flip variant of the second-order approximate coupled-cluster s...
We present a modification of the recently developed Restricted Active Space with n Spin Flips method...