A new strategy of using complex absorbing potentials (CAPs) within electronic structure calculations of metastable electronic states, which are ubiquitous in chemistry and physics, is presented. The stumbling block in numerical applications of CAPs is the necessity to optimize the CAP strength for each system, state, and one-electron basis set, while there is no clear metric to assess the quality of the results and no simple algorithm of achieving numerical convergence. By analyzing the behavior of resonance wave functions, we found that robust results can be obtained when considering fully stabilized resonance states characterized by constant density at large η (parameter determining the CAP strength). Then the perturbation due to the fini...
Electronic resonances are metastable atomic or molecular systems that can decay by electron detachme...
The Complex Absorbing Potential (CAP) method is widely used to compute resonances in Quantum Chemist...
For both nonrelativistic and relativistic Hamiltonians, the complex absorbing potential (CAP) method...
A production-level implementation of equation-of-motion coupled-cluster singles and doubles (EOM-CCS...
A production-level implementation of equation-of-motion coupled-cluster singles and doubles (EOM-CCS...
In contrast to bound states, electronically metastable states or resonances still represent a major ...
The Complex Absorbing Potential (CAP) method is widely used to compute resonances in Quantum Chemist...
The Complex Absorbing Potential (CAP) method is widely used to compute resonances in Quantum Chemist...
The Complex Absorbing Potential (CAP) method is widely used to compute resonances in Physics and Che...
In this thesis, we present our work in pursuit of black-box, \textit{ab initio} methods for computin...
The analysis of the features of the method of complex absorbing potential (CAP) is carried out for a...
Complex eigenvalues, resonances, play an important role in a large variety of fields in physics and ...
Electronic resonances are metastable atomic or molecular systems that can decay by electron detachme...
<p>An accurate description of both bound and resonance states is desirable in the study of molecules...
Complex absorbing potentials (CAPs) are imaginary potentials that are added to a Hamiltonian to chan...
Electronic resonances are metastable atomic or molecular systems that can decay by electron detachme...
The Complex Absorbing Potential (CAP) method is widely used to compute resonances in Quantum Chemist...
For both nonrelativistic and relativistic Hamiltonians, the complex absorbing potential (CAP) method...
A production-level implementation of equation-of-motion coupled-cluster singles and doubles (EOM-CCS...
A production-level implementation of equation-of-motion coupled-cluster singles and doubles (EOM-CCS...
In contrast to bound states, electronically metastable states or resonances still represent a major ...
The Complex Absorbing Potential (CAP) method is widely used to compute resonances in Quantum Chemist...
The Complex Absorbing Potential (CAP) method is widely used to compute resonances in Quantum Chemist...
The Complex Absorbing Potential (CAP) method is widely used to compute resonances in Physics and Che...
In this thesis, we present our work in pursuit of black-box, \textit{ab initio} methods for computin...
The analysis of the features of the method of complex absorbing potential (CAP) is carried out for a...
Complex eigenvalues, resonances, play an important role in a large variety of fields in physics and ...
Electronic resonances are metastable atomic or molecular systems that can decay by electron detachme...
<p>An accurate description of both bound and resonance states is desirable in the study of molecules...
Complex absorbing potentials (CAPs) are imaginary potentials that are added to a Hamiltonian to chan...
Electronic resonances are metastable atomic or molecular systems that can decay by electron detachme...
The Complex Absorbing Potential (CAP) method is widely used to compute resonances in Quantum Chemist...
For both nonrelativistic and relativistic Hamiltonians, the complex absorbing potential (CAP) method...