International audienceWe combine classical and ring polymer molecular dynamics simulations with the molecular jump model to provide a molecular description of the nuclear quantum effects (NQEs) on water reorientation and hydrogen-bond dynamics in liquid H2O and D2O. We show that while the net NQEs is negligible in D2O, it leads to a ∼13% acceleration in H2O dynamics compared to a classical description. Large angular jumps exchanging hydrogen-bond partners are the dominant reorientation pathway (just as in a classical description); the faster reorientation dynamics arise from the increased jump rate constant. NQEs do not change the jump amplitude distribution and no significant tunneling is found. The faster jump dynamics are quantitatively ...
Recent work has shown that the dynamics of hydrogen bonds in pure clays are affected by nuclear quan...
Nuclear quantum effects (NQEs) cause the nuclei of light elements like hydrogen to delocalize, affec...
In this work, we revisit the role of nuclear quantum effects on the structural and electronic proper...
International audienceWe combine classical and ring polymer molecular dynamics simulations with the ...
International audienceWe combine classical and ring polymer molecular dynamics simulations with the ...
We combine classical and ring polymer molecular dynamics simulations with the molecular jump model t...
We combine classical and ring polymer molecular dynamics simulations with the molecular jump model t...
A semiquantal (SQ) molecular dynamics (MD) simulation method using spherical Gaussian wave packets (...
This thesis is concerned with the influence of nuclear quantum effects (NQEs) on the properties of a...
This thesis is concerned with the influence of nuclear quantum effects (NQEs) on the properties of a...
The hydrogen bond (HB) is central to our understanding of the properties of water. However, despite ...
Structure and dynamics of water remain a challenge. Resolving the properties of hydro-gen bonding li...
Recent work has shown that the dynamics of hydrogen bonds in pure clays are affected by nuclear quan...
Nuclear quantum effects influence the structure and dynamics of hydrogen-bonded systems, such as wat...
Nuclear quantum effects influence the structure and dynamics of hydrogen-bonded systems, such as wat...
Recent work has shown that the dynamics of hydrogen bonds in pure clays are affected by nuclear quan...
Nuclear quantum effects (NQEs) cause the nuclei of light elements like hydrogen to delocalize, affec...
In this work, we revisit the role of nuclear quantum effects on the structural and electronic proper...
International audienceWe combine classical and ring polymer molecular dynamics simulations with the ...
International audienceWe combine classical and ring polymer molecular dynamics simulations with the ...
We combine classical and ring polymer molecular dynamics simulations with the molecular jump model t...
We combine classical and ring polymer molecular dynamics simulations with the molecular jump model t...
A semiquantal (SQ) molecular dynamics (MD) simulation method using spherical Gaussian wave packets (...
This thesis is concerned with the influence of nuclear quantum effects (NQEs) on the properties of a...
This thesis is concerned with the influence of nuclear quantum effects (NQEs) on the properties of a...
The hydrogen bond (HB) is central to our understanding of the properties of water. However, despite ...
Structure and dynamics of water remain a challenge. Resolving the properties of hydro-gen bonding li...
Recent work has shown that the dynamics of hydrogen bonds in pure clays are affected by nuclear quan...
Nuclear quantum effects influence the structure and dynamics of hydrogen-bonded systems, such as wat...
Nuclear quantum effects influence the structure and dynamics of hydrogen-bonded systems, such as wat...
Recent work has shown that the dynamics of hydrogen bonds in pure clays are affected by nuclear quan...
Nuclear quantum effects (NQEs) cause the nuclei of light elements like hydrogen to delocalize, affec...
In this work, we revisit the role of nuclear quantum effects on the structural and electronic proper...