2015
DOI: 10.1103/physrevb.92.201411
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Ab initiomolecular dynamics with simultaneous electron and phonon excitations: Application to the relaxation of hot atoms and molecules on metal surfaces

Abstract: The relaxation dynamics of hot H, N, and N 2 on Pd(100), Ag(111), and Fe(110), respectively, is studied by means of ab initio molecular dynamics with electronic friction. This method is adapted here to account for the electron density changes caused by lattice vibrations, thus treating on an equal footing both electron-hole (e-h) pair and phonon excitations. We find that even if the latter increasingly dominate the heavier is the hot species, the contribution of e-h pairs is by no means negligible in these cas… Show more

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Cited by 82 publications
(137 citation statements)
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References 41 publications
(53 reference statements)
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“…The applicability of LDFA for molecular adsorbates has been a topic of recent discussion [22,27,40]. Table I shows results for an embedding density based on the density of the clean surface (Independent Atom Approximation, LDFA-IAA) and an embedding density as given by the atoms-in-molecules scheme (LDFA-AIM) [40,42]. Analogously to the analysis of hydrogen, we can calculate atom-wise isotropic friction coefficients from the TDPT tensor by averaging over diagonal elements and discarding off-diagonals.…”
mentioning
confidence: 99%
“…The applicability of LDFA for molecular adsorbates has been a topic of recent discussion [22,27,40]. Table I shows results for an embedding density based on the density of the clean surface (Independent Atom Approximation, LDFA-IAA) and an embedding density as given by the atoms-in-molecules scheme (LDFA-AIM) [40,42]. Analogously to the analysis of hydrogen, we can calculate atom-wise isotropic friction coefficients from the TDPT tensor by averaging over diagonal elements and discarding off-diagonals.…”
mentioning
confidence: 99%
“…For hydrogen atoms and molecules interacting with metallic surfaces at low coverage, for which collisions with pre-adsorbed species are unlikely, the main energy dissipation channel in the picosecond time scale is the excitation of low lying e-h pairs. [45][46][47][48][49][50][51][52] As such an effect depends on the surface electronic structure, its sensitivity to the crystal face is a relevant issue that we address in the present study. To this end, we compare, in the following, the dynamics of H 2 formation by abstraction of pre-adsorbed H atoms upon H atom scattering at finite coverage for the W(100) and W(110) surfaces.…”
mentioning
confidence: 99%
“…In the latter, electronic nonadiabaticity is introduced through a dissipative force in the classical equations of motion for the hydrogen atoms. This approach has already been used to investigate non-adiabatic effects in gas-surface elementary processes 46,[48][49][50][51][61][62][63] and allows a good compromise between accuracy and simplicity. 51,64 The friction force, acting independently on each H atom, is approximated as the one corresponding to a homogeneous free electron gas with electronic density equal to that of the bare surface at the atom position.…”
mentioning
confidence: 99%
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