We describe a complete set of algorithms for ab initio molecular simulations based on numerically tabulated atom-centered orbitals (NAOs) to capture a wide range of molecular and materials properties from quantum-mechanical first principles. The full algorithmic framework described here is embodied in the Fritz Haber Institute "ab initio molecular simulations" (FHI-aims) computer program package. Its comprehensive description should be relevant to any other first-principles implementation based on NAOs. The focus here is on density-functional theory (DFT) in the local and semilocal (generalized gradient) approximations, but an extension to hybrid functionals, Hartree–Fock theory, and MP2/GW electron self-energies for total energies and exci...
Accurate quantum mechanical (QM) modeling of large molecular systems is computationally challenging ...
Electronic structure calculations, such as those employing Kohn–Sham density functional theory or ab...
The need for accurate calculations on atoms and diatomic molecules is motivated by the opportunities...
We describe a complete set of algorithms for ab initio molecular simulations based on numerically ta...
AbstractWe describe a complete set of algorithms for ab initio molecular simulations based on numeri...
The efficient implementation of electronic structure methods is essential for first principles model...
FHI-aims is a quantum mechanics software package based on numeric atom-centered orbitals (NAOs) with...
The goal of computational research in the fields of engineering, physics, chemistry or as a matter o...
Abstract: Many systems of great importance in material science, chemistry, solid-state physics, and ...
We push the boundaries of electronic structure-based ab-initio molecular dynamics (AIMD) beyond 100 ...
We formulate the Kohn-Sham density functional theory in terms of nonorthogonal, localized orbitals. ...
Development of new materials needs better understanding of the behavior of materials at nanoscale wh...
peer reviewedThe efficient implementation of electronic structure methods is essential for first pri...
We have developed and implemented a selfconsistent density functional method using standard norm-con...
We present a computational methodology based on atom-centered potentials (ACPs) for the efficient an...
Accurate quantum mechanical (QM) modeling of large molecular systems is computationally challenging ...
Electronic structure calculations, such as those employing Kohn–Sham density functional theory or ab...
The need for accurate calculations on atoms and diatomic molecules is motivated by the opportunities...
We describe a complete set of algorithms for ab initio molecular simulations based on numerically ta...
AbstractWe describe a complete set of algorithms for ab initio molecular simulations based on numeri...
The efficient implementation of electronic structure methods is essential for first principles model...
FHI-aims is a quantum mechanics software package based on numeric atom-centered orbitals (NAOs) with...
The goal of computational research in the fields of engineering, physics, chemistry or as a matter o...
Abstract: Many systems of great importance in material science, chemistry, solid-state physics, and ...
We push the boundaries of electronic structure-based ab-initio molecular dynamics (AIMD) beyond 100 ...
We formulate the Kohn-Sham density functional theory in terms of nonorthogonal, localized orbitals. ...
Development of new materials needs better understanding of the behavior of materials at nanoscale wh...
peer reviewedThe efficient implementation of electronic structure methods is essential for first pri...
We have developed and implemented a selfconsistent density functional method using standard norm-con...
We present a computational methodology based on atom-centered potentials (ACPs) for the efficient an...
Accurate quantum mechanical (QM) modeling of large molecular systems is computationally challenging ...
Electronic structure calculations, such as those employing Kohn–Sham density functional theory or ab...
The need for accurate calculations on atoms and diatomic molecules is motivated by the opportunities...