The aim of this paper is 2-fold. First, we want to report the extension of our virtual multifrequency spectrometer (VMS) to anharmonic intensities for Raman optical activity (ROA) with the full inclusion of first- and second-order resonances for both frequencies and intensities in the framework of the generalized second-order vibrational perturbation theory (GVPT2) for all kinds of vibrational spectroscopies. Then, from a more general point of view, we want to present and validate the performance of VMS for the parallel analysis of different vibrational spectra for medium-sized molecules (IR, Raman, VCD, ROA) including both mechanical and electric/magnetic anharmonicity. For the well-known methyloxirane benchmark, careful selection of densi...
We describe a new approach based on semiclassical molecular dynamics that allows simulating infrared...
Author Institution: Center for Nanotechnology Innovation@NEST, Istituto Italiano di Tecnologia, Piaz...
We present the first computational treatment of the complete second-order vibrational perturbation t...
Computation of full infrared (IR) and Raman spectra (including absolute intensities and transition e...
Computational spectroscopy is being commonly used to understand the observed spectra of molecular sy...
In this study, the resonance Raman spectra of H2 and O2 molecules were computed by the numerical res...
Following the previous developments to simulate fully anharmonic spectra within the vibrational seco...
Computational spectroscopy techniques have become in the last years effective means to predict and c...
Combining Raman scattering and Raman optical activity (ROA) with computer simulations reveals fine s...
We present a novel method for the calculation of vibrational Raman optical activity (ROA) spectra ba...
We present a reliable and cost-effective procedure for the inclusion of anharmonic effects in excite...
Vibrational spectroscopy represents an active frontier for the identification and characterization o...
7 pags., 5 tabs.The influence of anharmonicity up to the cubic force constants on the Raman tensors ...
We present a computational methodology based on a polarizable Quantum Mechanical (QM)/Molecular Mech...
The infrared (IR) and vibrational circular dichroism (VCD) spectra of 2,3-butanediol and trans-1,2-c...
We describe a new approach based on semiclassical molecular dynamics that allows simulating infrared...
Author Institution: Center for Nanotechnology Innovation@NEST, Istituto Italiano di Tecnologia, Piaz...
We present the first computational treatment of the complete second-order vibrational perturbation t...
Computation of full infrared (IR) and Raman spectra (including absolute intensities and transition e...
Computational spectroscopy is being commonly used to understand the observed spectra of molecular sy...
In this study, the resonance Raman spectra of H2 and O2 molecules were computed by the numerical res...
Following the previous developments to simulate fully anharmonic spectra within the vibrational seco...
Computational spectroscopy techniques have become in the last years effective means to predict and c...
Combining Raman scattering and Raman optical activity (ROA) with computer simulations reveals fine s...
We present a novel method for the calculation of vibrational Raman optical activity (ROA) spectra ba...
We present a reliable and cost-effective procedure for the inclusion of anharmonic effects in excite...
Vibrational spectroscopy represents an active frontier for the identification and characterization o...
7 pags., 5 tabs.The influence of anharmonicity up to the cubic force constants on the Raman tensors ...
We present a computational methodology based on a polarizable Quantum Mechanical (QM)/Molecular Mech...
The infrared (IR) and vibrational circular dichroism (VCD) spectra of 2,3-butanediol and trans-1,2-c...
We describe a new approach based on semiclassical molecular dynamics that allows simulating infrared...
Author Institution: Center for Nanotechnology Innovation@NEST, Istituto Italiano di Tecnologia, Piaz...
We present the first computational treatment of the complete second-order vibrational perturbation t...