2D-Raman-THz spectroscopy of liquid water, which has been presented recently (Proc. Natl. Acad. Sci. USA 110, 20402 (2013)), directly probes the intermolecular degrees of freedom of the hydrogen-bond network. However, being a relatively new technique, its information content is not fully explored as to date. While the spectroscopic signal can be simulated based on molecular dynamics simulation in connection with a water force field, it is difficult to relate spectroscopic signatures to the underlying microscopic features of the force field. Here, a completely different approach is taken that starts from an as simple as possible model, i.e., a single vibrational mode with electrical and mechanical anharmonicity augmented with homogeneous and...
We present 2D terahertz-terahertz-Raman (2D TTR) spectroscopy, the first technique, to our knowledge...
We report the first <i>ab initio</i> simulations of the Raman spectra of liquid water, obtained by c...
Hybrid 2D Raman-THz spectroscopy with the Raman-THz-THz (RTT) pulse sequence is used to explore the ...
2D-Raman-THz spectroscopy of liquid water, which has been presented recently (Proc. Natl. Acad. Sci....
The 2D-Raman-THz response in all possible time-orderings (Raman-THz-THz, THz-Raman-THz, and THz-THz-...
Recently, various spectroscopic techniques have been developed, which can measure the 2D response of...
Recently, various spectroscopic techniques have been developed, which can measure the 2D response of...
Frequency-domain two-dimensional (2D) Raman signals, which are equivalent to coherent two-dimensiona...
Energy dissipation in water is very fast and more efficient than in many other liquids. This behavio...
A polarizable water model is presented which has been calibrated against experimental THz and Raman ...
A polarizable water model is presented which has been calibrated against experimental THz and Raman ...
Full classical molecular dynamics (MD) simulations of two-dimensional (2D) infrared-Raman and 2D Ram...
The structural and dynamical properties of water are known to be affected by ion solvation. However,...
A three-point velocity correlation function v(t(1) + t(2))v2(t(1))v(0) is introduced for a better un...
A three-point velocity correlation function v(t(1) + t(2))v2(t(1))v(0) is introduced for a better un...
We present 2D terahertz-terahertz-Raman (2D TTR) spectroscopy, the first technique, to our knowledge...
We report the first <i>ab initio</i> simulations of the Raman spectra of liquid water, obtained by c...
Hybrid 2D Raman-THz spectroscopy with the Raman-THz-THz (RTT) pulse sequence is used to explore the ...
2D-Raman-THz spectroscopy of liquid water, which has been presented recently (Proc. Natl. Acad. Sci....
The 2D-Raman-THz response in all possible time-orderings (Raman-THz-THz, THz-Raman-THz, and THz-THz-...
Recently, various spectroscopic techniques have been developed, which can measure the 2D response of...
Recently, various spectroscopic techniques have been developed, which can measure the 2D response of...
Frequency-domain two-dimensional (2D) Raman signals, which are equivalent to coherent two-dimensiona...
Energy dissipation in water is very fast and more efficient than in many other liquids. This behavio...
A polarizable water model is presented which has been calibrated against experimental THz and Raman ...
A polarizable water model is presented which has been calibrated against experimental THz and Raman ...
Full classical molecular dynamics (MD) simulations of two-dimensional (2D) infrared-Raman and 2D Ram...
The structural and dynamical properties of water are known to be affected by ion solvation. However,...
A three-point velocity correlation function v(t(1) + t(2))v2(t(1))v(0) is introduced for a better un...
A three-point velocity correlation function v(t(1) + t(2))v2(t(1))v(0) is introduced for a better un...
We present 2D terahertz-terahertz-Raman (2D TTR) spectroscopy, the first technique, to our knowledge...
We report the first <i>ab initio</i> simulations of the Raman spectra of liquid water, obtained by c...
Hybrid 2D Raman-THz spectroscopy with the Raman-THz-THz (RTT) pulse sequence is used to explore the ...