International audienceA computational approach is presented to compute anharmonic vibrational states of solids from quantum-mechanical DFT calculations by taking into explicit account phonon–phonon couplings via the vibrational configuration interaction (VCI) method. The Born–Oppenheimer potential energy surface (PES) is expanded in a Taylor’s series in terms of harmonic normal coordinates, centered at the equilibrium nuclear configuration, is truncated to quartic order, and contains one-mode, two-mode, and three-mode interatomic force constants. The description of the anharmonic terms of the PES involves the numerical evaluation of high-order energy derivatives (cubic and quartic in our case) with respect to nuclear displacements and const...
We present a new approach for calculating anharmonic corrections to vibrational frequency calculatio...
Author Institution: Theoretical Chemistry Group, Chemistry Division, Argonne National Laboratory; De...
Author Institution: Theoretical Chemistry Group, Chemistry Division, Argonne National Laboratory; De...
International audience; A computational approach is presented to compute anharmonic vibrational stat...
International audienceTwo methods are implemented in the Crystal program for the calculation of anha...
Two methods are implemented in the Crystal program for the calculation of anharmonic vibrational sta...
International audience; Two methods are implemented in the Crystal program for the calculation of an...
High-level vibrational calculations have been used to investigate anharmonicity in a wide variety of...
High-level vibrational calculations have been used to investigate anharmonicity in a wide variety of...
Vibrational many-body methods for molecules and extended systems have been developed that can accoun...
Author Institution: Department of Chemistry, Hope College, Holland, MI 49423Spectroscopy of excited ...
This thesis describes the development and testing of a new suite of methods for solving the nuclear...
Author Institution: Department of Chemistry, The Ohio State University, Columbus, OH 43210The calcul...
Vibrational anharmonicity and resonances frequently complicate assignment of vibrational spectra. In...
Vibrational many-body methods for molecules and extended systems have been developed that can accoun...
We present a new approach for calculating anharmonic corrections to vibrational frequency calculatio...
Author Institution: Theoretical Chemistry Group, Chemistry Division, Argonne National Laboratory; De...
Author Institution: Theoretical Chemistry Group, Chemistry Division, Argonne National Laboratory; De...
International audience; A computational approach is presented to compute anharmonic vibrational stat...
International audienceTwo methods are implemented in the Crystal program for the calculation of anha...
Two methods are implemented in the Crystal program for the calculation of anharmonic vibrational sta...
International audience; Two methods are implemented in the Crystal program for the calculation of an...
High-level vibrational calculations have been used to investigate anharmonicity in a wide variety of...
High-level vibrational calculations have been used to investigate anharmonicity in a wide variety of...
Vibrational many-body methods for molecules and extended systems have been developed that can accoun...
Author Institution: Department of Chemistry, Hope College, Holland, MI 49423Spectroscopy of excited ...
This thesis describes the development and testing of a new suite of methods for solving the nuclear...
Author Institution: Department of Chemistry, The Ohio State University, Columbus, OH 43210The calcul...
Vibrational anharmonicity and resonances frequently complicate assignment of vibrational spectra. In...
Vibrational many-body methods for molecules and extended systems have been developed that can accoun...
We present a new approach for calculating anharmonic corrections to vibrational frequency calculatio...
Author Institution: Theoretical Chemistry Group, Chemistry Division, Argonne National Laboratory; De...
Author Institution: Theoretical Chemistry Group, Chemistry Division, Argonne National Laboratory; De...