International audienceA new theory is proposed to describe spectral effects of the coupling between molecular rotations and OH⋯O motions in liquid water. The correlation function approach is employed together with a special type of development in which the coupling energy of these two motions is the expansion parameter. The isotropy of the liquid medium plays an essential role in this study. Based on this theory, a new infrared pump-probe experiment is described permitting a visualization of molecular rotations at subpicosecond time scales. Full curves relating the mean squared rotational angle and time, and not only the rotational relaxation time, are measured by this experiment. However, very short times where the incident pulses overlap ...
A molecular dynamics study of liquid water and models of water has been carried out to understand th...
The molecular reorientation of liquid water is key to the hydration and stabilization of molecules a...
The following article appeared in Yamada, S. A., Thompson, W. H., & Fayer, M. D. (2017). Water-anion...
International audienceA new theory is proposed to describe spectral effects of the coupling between ...
International audienceUltrafast pump-probe experiments are described permitting a visualization of m...
The short-time orientational relaxation of water is studied by ultrafast infrared pump-probe spectro...
Infrared pump-probe experiments are performed on isolated H2O molecules diluted in acetonitrile in t...
The ultrafast librational (hindered rotational) relaxation of a rotationally excited H2O molecule in...
Femtosecond mid-infrared pump-probe spectroscopy is used to study the orientational relaxation of HD...
International audienceWe developed an experimental approach to study pure liquid water in the infrar...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2005.Vita.Includes bibli...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2004.MIT Institute Archi...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2011.Cataloged from PDF ...
The reorientational motion of the molecules in liquid water is investigated by measuring the anisotr...
Compared with other molecular liquids, water is highly structured because of its ability to form up ...
A molecular dynamics study of liquid water and models of water has been carried out to understand th...
The molecular reorientation of liquid water is key to the hydration and stabilization of molecules a...
The following article appeared in Yamada, S. A., Thompson, W. H., & Fayer, M. D. (2017). Water-anion...
International audienceA new theory is proposed to describe spectral effects of the coupling between ...
International audienceUltrafast pump-probe experiments are described permitting a visualization of m...
The short-time orientational relaxation of water is studied by ultrafast infrared pump-probe spectro...
Infrared pump-probe experiments are performed on isolated H2O molecules diluted in acetonitrile in t...
The ultrafast librational (hindered rotational) relaxation of a rotationally excited H2O molecule in...
Femtosecond mid-infrared pump-probe spectroscopy is used to study the orientational relaxation of HD...
International audienceWe developed an experimental approach to study pure liquid water in the infrar...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2005.Vita.Includes bibli...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2004.MIT Institute Archi...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2011.Cataloged from PDF ...
The reorientational motion of the molecules in liquid water is investigated by measuring the anisotr...
Compared with other molecular liquids, water is highly structured because of its ability to form up ...
A molecular dynamics study of liquid water and models of water has been carried out to understand th...
The molecular reorientation of liquid water is key to the hydration and stabilization of molecules a...
The following article appeared in Yamada, S. A., Thompson, W. H., & Fayer, M. D. (2017). Water-anion...