Femtosecond mid-IR spectroscopy is used to study the vibrational relaxation dynamics in neat liquid water. By exciting the bending vibration and probing the stretching mode, it is possible to reliably determine the bending and librational lifetimes of water. The anharmonic coupling between the bending and the stretching degrees of freedom is quantified in terms of a differential absorption cross-section for the fundamental stretching transition carrying one spectating bending quantum. A positive off-diagonal anharmonicity may be caused by the initial excitation of the anharmonic bending mode and is mediated by the hydrogen bonded network. (c) 2007 Elsevier B.V. All rights reserved.</p
A quantitative characterization of intermolecular and intramolecular couplings that modulate the ...
An unexpectedly fast (0.2 ps) intramolecular energy conversion occurring in H2O molecules has been r...
Coupling between vibrational modes is essential for energy transfer and dissipation in condensed mat...
Femtosecond mid-IR spectroscopy is used to study the vibrational relaxation dynamics in neat liquid ...
Femtosecond mid-IR spectroscopy is used to study the vibrational relaxation dynamics in neat liquid ...
Abstract. Following excitation of the H-O-H bending mode of pure liquid water, the stretching mode i...
Multicolor infrared ultrafast spectroscopy is applied to investigate the vibrational relaxation dyna...
Infrared pump-probe experiments are performed on isolated H2O molecules diluted in acetonitrile in t...
We present a study on the relaxation of the O¿H stretch vibration in a dilute HDO:D2O solution using...
Abstract. Multicolor infrared ultrafast spectroscopy is applied to investigate the vibrational relax...
International audienceWe developed an experimental approach to study pure liquid water in the infrar...
Water’s extended hydrogen-bond network results in rich and complex dynamics on the sub-picosecond ti...
A quantitative characterization of intermolecular and intramolecular couplings that modulate the ...
An unexpectedly fast (0.2 ps) intramolecular energy conversion occurring in H2O molecules has been r...
Coupling between vibrational modes is essential for energy transfer and dissipation in condensed mat...
Femtosecond mid-IR spectroscopy is used to study the vibrational relaxation dynamics in neat liquid ...
Femtosecond mid-IR spectroscopy is used to study the vibrational relaxation dynamics in neat liquid ...
Abstract. Following excitation of the H-O-H bending mode of pure liquid water, the stretching mode i...
Multicolor infrared ultrafast spectroscopy is applied to investigate the vibrational relaxation dyna...
Infrared pump-probe experiments are performed on isolated H2O molecules diluted in acetonitrile in t...
We present a study on the relaxation of the O¿H stretch vibration in a dilute HDO:D2O solution using...
Abstract. Multicolor infrared ultrafast spectroscopy is applied to investigate the vibrational relax...
International audienceWe developed an experimental approach to study pure liquid water in the infrar...
Water’s extended hydrogen-bond network results in rich and complex dynamics on the sub-picosecond ti...
A quantitative characterization of intermolecular and intramolecular couplings that modulate the ...
An unexpectedly fast (0.2 ps) intramolecular energy conversion occurring in H2O molecules has been r...
Coupling between vibrational modes is essential for energy transfer and dissipation in condensed mat...