Measurements of the proton momentum distribution n(p) in water from ambient conditions to above the supercritical point are compared with theoretical calculations based on a recently developed polarizable water model. The n(p) along the H-bond direction is narrower in the dense phases, and approaches that of the isolated molecule in the more dilute phases. The theoretical model, which includes only electrostatic interactions, is unable to explain the softening of the local potential experienced by the proton in the dense phases, but it accurately predicts the n(p) for the dilute phases
International audienceMonte Carlo and molecular dynamics computer simulations using the rigid TIP4P ...
Free energy barriers associated with the transfer of an excess proton in water and related to the po...
We report new results of a combined analysis of previous Inelastic Neutron Scattering (INS) and Deep...
Measurements of the proton momentum distribution n(p) in water from ambient conditions to above ...
Proton mean kinetic energy in supercritical water was determined using deep inelastic neutron scatte...
We find, by means of a deep inelastic neutron scattering experiment, a significant excess of pro...
Deep Inelastic Neutron Scattering (Neutron Compton Scattering), is used to measure the momentum dist...
A strong temperature dependence of proton mean kinetic energy was observed for liquid water arou...
Molecular dynamics simulations have been performed to analyze microscopic details related to aqueous...
We conducted molecular dynamics simulations of supercritical water using a flexible simple point cha...
One of the many peculiar properties of water is the pronounced deviation of the proton momentum dist...
Water, the prototype of a liquid to ordinary people, is the most anomalous liquid to physicists, sho...
The momentum distribution of protons in the hydration shell of a globular protein has been measu...
International audienceMonte Carlo and molecular dynamics computer simulations using the rigid TIP4P ...
Free energy barriers associated with the transfer of an excess proton in water and related to the po...
We report new results of a combined analysis of previous Inelastic Neutron Scattering (INS) and Deep...
Measurements of the proton momentum distribution n(p) in water from ambient conditions to above ...
Proton mean kinetic energy in supercritical water was determined using deep inelastic neutron scatte...
We find, by means of a deep inelastic neutron scattering experiment, a significant excess of pro...
Deep Inelastic Neutron Scattering (Neutron Compton Scattering), is used to measure the momentum dist...
A strong temperature dependence of proton mean kinetic energy was observed for liquid water arou...
Molecular dynamics simulations have been performed to analyze microscopic details related to aqueous...
We conducted molecular dynamics simulations of supercritical water using a flexible simple point cha...
One of the many peculiar properties of water is the pronounced deviation of the proton momentum dist...
Water, the prototype of a liquid to ordinary people, is the most anomalous liquid to physicists, sho...
The momentum distribution of protons in the hydration shell of a globular protein has been measu...
International audienceMonte Carlo and molecular dynamics computer simulations using the rigid TIP4P ...
Free energy barriers associated with the transfer of an excess proton in water and related to the po...
We report new results of a combined analysis of previous Inelastic Neutron Scattering (INS) and Deep...