A molecular-dynamics simulation of extended simple point charge water in a time interval of 1 fs to 50 ns has been performed to study the single-particle dynamics of water at supercooled temperatures, In spite of the fact that upon supercooling water progressively evolves into a more open structure locally, the single-particle dynamics is nevertheless shown to be dominated by the so-called cage effect experienced by the test particle, The slow structural relaxation of the cage at low temperatures leads to the phenomenon of slow dynamics that can only be completely studied by following the trajectories into the nanosecond range. The objective df this paper is twofold. First, we test the accuracy of various approximations used in-previous ana...
Structural dynamics in liquid water slow down dramatically in the supercooled regime. To shed furthe...
We study the dynamic susceptibility χT(Q,t) of deeply supercooled water by means of quasielastic neu...
A theoretical scheme to evaluate the long\u2010time effects of hydrogen bond fluctuations on water d...
A molecular-dynamics simulation of extended simple point charge water in a time interval of 1 fs to ...
We analyze a set of 10 M-step molecular dynamics (MD) data of low-temperature SPC/E model water with...
One of the outstanding challenges presented by liquid water is to understand how molecules can move ...
Molecular dynamics (MD) simulations are commonly used to explore the structural and dynamical proper...
A molecular dynamics simulation in a time interval of 1 fs to 50 ns has been performed to study the ...
We made a molecular dynamics study of single-particle dynamics of water molecules in deeply supercoo...
Nous présentons des résultats d'expériences de diffusion incohérente de neutrons, quasi-élastique et...
A molecular dynamics simulation in a time interval of 1 fs to 50 ns has been performed to study the ...
We review our incoherent quasielastic neutron scattering (QENS) studies of the dynamics of supercool...
We perform lone molecular dynamics simulations of liquid water in normal and supercooled states for ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Nuclear Engineering, 2005.This elec...
The highlights of our recent high-resolution quasi-elastic incoherent neutron: scattering studies of...
Structural dynamics in liquid water slow down dramatically in the supercooled regime. To shed furthe...
We study the dynamic susceptibility χT(Q,t) of deeply supercooled water by means of quasielastic neu...
A theoretical scheme to evaluate the long\u2010time effects of hydrogen bond fluctuations on water d...
A molecular-dynamics simulation of extended simple point charge water in a time interval of 1 fs to ...
We analyze a set of 10 M-step molecular dynamics (MD) data of low-temperature SPC/E model water with...
One of the outstanding challenges presented by liquid water is to understand how molecules can move ...
Molecular dynamics (MD) simulations are commonly used to explore the structural and dynamical proper...
A molecular dynamics simulation in a time interval of 1 fs to 50 ns has been performed to study the ...
We made a molecular dynamics study of single-particle dynamics of water molecules in deeply supercoo...
Nous présentons des résultats d'expériences de diffusion incohérente de neutrons, quasi-élastique et...
A molecular dynamics simulation in a time interval of 1 fs to 50 ns has been performed to study the ...
We review our incoherent quasielastic neutron scattering (QENS) studies of the dynamics of supercool...
We perform lone molecular dynamics simulations of liquid water in normal and supercooled states for ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Nuclear Engineering, 2005.This elec...
The highlights of our recent high-resolution quasi-elastic incoherent neutron: scattering studies of...
Structural dynamics in liquid water slow down dramatically in the supercooled regime. To shed furthe...
We study the dynamic susceptibility χT(Q,t) of deeply supercooled water by means of quasielastic neu...
A theoretical scheme to evaluate the long\u2010time effects of hydrogen bond fluctuations on water d...