© International Astronomical Union 2020. We use quantum chemical techniques to model the vibrational spectra of small aromatic molecules on a proton-ordered hexagonal crystalline water ice (XIh) model. We achieve a good agreement with experimental data by accounting for vibrational anharmonicity and correcting the potential energy landscape for known failures of density functional theory. A standard harmonic description of the vibrational spectra only leads to a broad qualitative agreement
Author Institution: Molecular Research InstitutePolycyclic aromatic hydrocarbons (PAHs) are the larg...
We present a theoretical framework for the computation of anharmonic vibrational frequencies for lar...
The spectroscopic features of the multilayer honeycomb model of structured water are analyzed on the...
© International Astronomical Union 2020. We use quantum chemical techniques to model the vibrational...
We present a hybrid CCSD(T) + PBE-D3 approach to calculating the vibrational signatures for gas-phas...
The hydrogen-disordered structure of ice III makes it difficult to analyze its vibrational spectrum ...
COST Action CM1401, Faro (Portugal), 16-20 Jan 2017. -- https://astrochem2017.sciencesconf.org/Solar...
International audiencePolycyclic Aromatic Hydrocarbons (PAHs) have had an astrophysical interest sin...
Water is an extraordinary substance. It owes its characteristic anomalous properties to a network of...
We use extensive first-principles quantum mechanical calculations to show that, although the static ...
Water ice is a unique material presenting intriguing physical properties, such as negative thermal e...
Polycyclic aromatic hydrocarbons (PAH) molecules are thought to be responsible for specific infrared...
Three-dimensionally-resolved proton momentum distributions and end-to-end distributions have been ca...
The C$^{+}$ cation (CII) is the dominant form of carbon in diffuse clouds and an important tracer fo...
International audienceThis joint theoretical and experimental study establishes that the adsorption ...
Author Institution: Molecular Research InstitutePolycyclic aromatic hydrocarbons (PAHs) are the larg...
We present a theoretical framework for the computation of anharmonic vibrational frequencies for lar...
The spectroscopic features of the multilayer honeycomb model of structured water are analyzed on the...
© International Astronomical Union 2020. We use quantum chemical techniques to model the vibrational...
We present a hybrid CCSD(T) + PBE-D3 approach to calculating the vibrational signatures for gas-phas...
The hydrogen-disordered structure of ice III makes it difficult to analyze its vibrational spectrum ...
COST Action CM1401, Faro (Portugal), 16-20 Jan 2017. -- https://astrochem2017.sciencesconf.org/Solar...
International audiencePolycyclic Aromatic Hydrocarbons (PAHs) have had an astrophysical interest sin...
Water is an extraordinary substance. It owes its characteristic anomalous properties to a network of...
We use extensive first-principles quantum mechanical calculations to show that, although the static ...
Water ice is a unique material presenting intriguing physical properties, such as negative thermal e...
Polycyclic aromatic hydrocarbons (PAH) molecules are thought to be responsible for specific infrared...
Three-dimensionally-resolved proton momentum distributions and end-to-end distributions have been ca...
The C$^{+}$ cation (CII) is the dominant form of carbon in diffuse clouds and an important tracer fo...
International audienceThis joint theoretical and experimental study establishes that the adsorption ...
Author Institution: Molecular Research InstitutePolycyclic aromatic hydrocarbons (PAHs) are the larg...
We present a theoretical framework for the computation of anharmonic vibrational frequencies for lar...
The spectroscopic features of the multilayer honeycomb model of structured water are analyzed on the...