The various surface sites of In atoms deposited to a coverage of 0.013 monolayer (ML) onto a stepped Cu(100) surface were determined with low-energy ion scattering (LEIS) as a function of deposition temperature. From the fractions of In atoms occupying different sites, observed in the temperature range 63-300 K, the mobilities of In atoms on the terraces and along the steps were deduced. It was found that during the LEIS measurements with 6 keV Ne ions at temperatures below 120 K Cu adatoms were accumulating at the surface. This is explained by diffusion to the surface of interstitial Cu atoms created in the damage cascades. For temperatures above 120 K these Cu adatoms were found to be mobile on the Cu(100) terraces
We have studied deposition-induced mobility of atoms on surfaces by means of molecular dynamics (MD)...
We have studied deposition-induced mobility of atoms on surfaces by means of molecular dynamics (MD)...
We have studied deposition-induced mobility of atoms on surfaces by means of molecular dynamics (MD)...
The various surface sites of In atoms deposited to a coverage of 0.013 monolayer (ML) onto a stepped...
We report the observation of adatoms appearing on the surface due to ion beam irradiation. These ada...
We report the observation of adatoms appearing on the surface due to ion beam irradiation. These ada...
We report the observation of adatoms appearing on the surface due to ion beam irradiation. These ada...
We report the observation of adatoms appearing on the surface due to ion beam irradiation. These ada...
Mobilities of Cu and In atoms on a stepped Cu(100) surface were derived from low-energy ion scatteri...
Mobilities of Cu and In atoms on a stepped Cu(100) surface were derived from low-energy ion scatteri...
Mobilities of Cu and In atoms on a stepped Cu(100) surface were derived from low-energy ion scatteri...
Mobilities of Cu and In atoms on a stepped Cu(100) surface were derived from low-energy ion scatteri...
Mobilities of Cu and In atoms on a stepped Cu(100) surface were derived from low-energy ion scatteri...
We have studied deposition-induced mobility of atoms on surfaces by means of molecular dynamics (MD)...
We have studied deposition-induced mobility of atoms on surfaces by means of molecular dynamics (MD)...
We have studied deposition-induced mobility of atoms on surfaces by means of molecular dynamics (MD)...
We have studied deposition-induced mobility of atoms on surfaces by means of molecular dynamics (MD)...
We have studied deposition-induced mobility of atoms on surfaces by means of molecular dynamics (MD)...
The various surface sites of In atoms deposited to a coverage of 0.013 monolayer (ML) onto a stepped...
We report the observation of adatoms appearing on the surface due to ion beam irradiation. These ada...
We report the observation of adatoms appearing on the surface due to ion beam irradiation. These ada...
We report the observation of adatoms appearing on the surface due to ion beam irradiation. These ada...
We report the observation of adatoms appearing on the surface due to ion beam irradiation. These ada...
Mobilities of Cu and In atoms on a stepped Cu(100) surface were derived from low-energy ion scatteri...
Mobilities of Cu and In atoms on a stepped Cu(100) surface were derived from low-energy ion scatteri...
Mobilities of Cu and In atoms on a stepped Cu(100) surface were derived from low-energy ion scatteri...
Mobilities of Cu and In atoms on a stepped Cu(100) surface were derived from low-energy ion scatteri...
Mobilities of Cu and In atoms on a stepped Cu(100) surface were derived from low-energy ion scatteri...
We have studied deposition-induced mobility of atoms on surfaces by means of molecular dynamics (MD)...
We have studied deposition-induced mobility of atoms on surfaces by means of molecular dynamics (MD)...
We have studied deposition-induced mobility of atoms on surfaces by means of molecular dynamics (MD)...
We have studied deposition-induced mobility of atoms on surfaces by means of molecular dynamics (MD)...
We have studied deposition-induced mobility of atoms on surfaces by means of molecular dynamics (MD)...