Energy loss from the translational motion of an atom or molecule impinging on a metal surface to the surface may determine whether the incident particle can trap on the surface, and whether it has enough energy left to react with another molecule present at the surface. Although this is relevant to heterogeneous catalysis, the relative extent to which energy loss of hot atoms takes place to phonons or electron-hole pair (ehp) excitation, and its dependence on the system's parameters, remain largely unknown. We address these questions for two systems that present an extreme case of the mass ratio of the incident atom to the surface atom, i.e., H + Cu(111) and H + Au(111), by presenting adiabatic ab initio molecular dynamics (AIMD) prediction...
Molecular dynamics with electronic friction (MDEF) at the level of the local density friction approx...
In summary, we have extended the EMT formalism derived for fcc metals22 to the bcc case. We then fit...
The breakdown of the Born-Oppenheimer approximation gives rise to nonadiabatic effects in gas-surfac...
Energy loss from the translational motion of an atom or molecule impinging on a metal surface to the...
Nonadiabatic energy transfer from the translational motion (T) of a molecule impinging on metal surf...
Nonadiabatic energy transfer from the translational motion (<i>T</i>) of a molecule impinging on met...
Nonadiabatic energy transfer from the translational motion (T) of a molecule impinging on metal surf...
When a hydrogen atom collides with a surface it may either scatter or stick to the surface, dependin...
We report an analytic potential energy surface (PES) based on several hundred DFT energies for H int...
We report an analytic potential energy surface (PES) based on several hundred DFT energies for H int...
We have constructed a potential energy surface (PES) for H-atoms interacting with fcc Au(111) based ...
Efficient transfer of translational energy to electron-hole pair excitation involving multiple colli...
We have constructed a potential energy surface (PES) for H-atoms interacting with fcc Au(111) based ...
Molecular dynamics with electronic friction (MDEF) at the level of the local density friction approx...
I have constructed a full-dimensional potential energy surface (PES) for a H atom interacting with a...
Molecular dynamics with electronic friction (MDEF) at the level of the local density friction approx...
In summary, we have extended the EMT formalism derived for fcc metals22 to the bcc case. We then fit...
The breakdown of the Born-Oppenheimer approximation gives rise to nonadiabatic effects in gas-surfac...
Energy loss from the translational motion of an atom or molecule impinging on a metal surface to the...
Nonadiabatic energy transfer from the translational motion (T) of a molecule impinging on metal surf...
Nonadiabatic energy transfer from the translational motion (<i>T</i>) of a molecule impinging on met...
Nonadiabatic energy transfer from the translational motion (T) of a molecule impinging on metal surf...
When a hydrogen atom collides with a surface it may either scatter or stick to the surface, dependin...
We report an analytic potential energy surface (PES) based on several hundred DFT energies for H int...
We report an analytic potential energy surface (PES) based on several hundred DFT energies for H int...
We have constructed a potential energy surface (PES) for H-atoms interacting with fcc Au(111) based ...
Efficient transfer of translational energy to electron-hole pair excitation involving multiple colli...
We have constructed a potential energy surface (PES) for H-atoms interacting with fcc Au(111) based ...
Molecular dynamics with electronic friction (MDEF) at the level of the local density friction approx...
I have constructed a full-dimensional potential energy surface (PES) for a H atom interacting with a...
Molecular dynamics with electronic friction (MDEF) at the level of the local density friction approx...
In summary, we have extended the EMT formalism derived for fcc metals22 to the bcc case. We then fit...
The breakdown of the Born-Oppenheimer approximation gives rise to nonadiabatic effects in gas-surfac...