We find, by means of a deep inelastic neutron scattering experiment, a significant excess of proton mean kinetic energy hEki in supercooled water, compared with that measured in stable liquid and solid phases. The measured values of hEki at moderate degrees of supercooling do not fit the predicted linear increase with temperature observed for the water stable phases. This anomalous behavior is confirmed by the shape of the measured momentum distribution, thus supporting a likely occurrence of ground-state quantum delocalization of a proton between the O atoms of two neighboring molecules. These results strongly suggest a transition from a single-well to a double-well potential felt by the delocalized proton, with a reduced first neighbor O-...
In this paper, we present the results of deep inelastic neutron scattering (DINS) measurements on su...
Neutron diffraction and deep inelastic neutron scattering experiments performed on bulk stable and s...
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 proton ...
A strong temperature dependence of proton mean kinetic energy was observed for liquid water around t...
In a recent article [Pietropaolo et al., Phys. Rev. Lett.100, 127802 (2008)] we discussed the result...
A strong temperature dependence of proton mean kinetic energy was observed for liquid water arou...
Deep Inelastic Neutron Scattering (Neutron Compton Scattering), is used to measure the momentum dist...
""A deep inelastic neutron scattering experiment, performed on D2O in the stable and metastable liqu...
""A deep inelastic neutron scattering experiment, performed on D2O in the temperature range 276-292 ...
This study presents the first direct and quantitative measurement of the nuclear momentum distributi...
The OH stretching vibrational spectrum of water was measured in a wide range of temperatures across ...
Neutron diffraction measurements with isotopic substitution (NDIS) and Deep In- elastic Neutron Scat...
Neutron diffraction and deep inelastic neutron scattering experiments performed on bulk stable and ...
In this paper, we present the results of deep inelastic neutron scattering (DINS) measurements on su...
Neutron diffraction and deep inelastic neutron scattering experiments performed on bulk stable and s...
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 proton ...
A strong temperature dependence of proton mean kinetic energy was observed for liquid water around t...
In a recent article [Pietropaolo et al., Phys. Rev. Lett.100, 127802 (2008)] we discussed the result...
A strong temperature dependence of proton mean kinetic energy was observed for liquid water arou...
Deep Inelastic Neutron Scattering (Neutron Compton Scattering), is used to measure the momentum dist...
""A deep inelastic neutron scattering experiment, performed on D2O in the stable and metastable liqu...
""A deep inelastic neutron scattering experiment, performed on D2O in the temperature range 276-292 ...
This study presents the first direct and quantitative measurement of the nuclear momentum distributi...
The OH stretching vibrational spectrum of water was measured in a wide range of temperatures across ...
Neutron diffraction measurements with isotopic substitution (NDIS) and Deep In- elastic Neutron Scat...
Neutron diffraction and deep inelastic neutron scattering experiments performed on bulk stable and ...
In this paper, we present the results of deep inelastic neutron scattering (DINS) measurements on su...
Neutron diffraction and deep inelastic neutron scattering experiments performed on bulk stable and s...
Proton mean kinetic energy in supercritical water was determined using deep inelastic neutron scatte...