Impact of keV-energy size-selected Arn (n = 16, 27, 41) cluster ions on diamond and graphite is studied both experimentally and by molecular dynamics simulations. For the case of diamond, relatively high cluster kinetic energies (above certain threshold) are required to produce severe radiation damage and originate crater formation on the surface. This is related to very strong chemical bonds and both the melting (or sublimation) point and thermal conductivity of diamond being the highest among the solids. For the case of graphite, which is layered material with weak van der Waals bonds between the graphene planes, significant radiation damage is already introduced by impact of clusters with low kinetic energies (a few tens of eV/atom). How...
Radiation damage cascades in diamond are studied by molecular dynamics simulations employing the Env...
Radiation damage cascades in diamond are studied by molecular dynamics simulations employing the Env...
Graphite targets have been irradiated at 90 K and 300 K with 850 MeV and 6 GeV lead ions and with 20...
We show that for impacting argon clusters, both mean projected ranges of the constituents and depths...
The dynamical processes of a low-energy carbon ion collision with the graphene sheet supported by di...
Radiation damage cascades in diamond are studied by molecular dynamics simulations employing the Env...
The dynamical processes of a low-energy carbon ion collision with the graphene sheet supported by di...
Large-scale molecular dynamics simulations of high acceleration energy single cluster impacts on a d...
SIMS experiments using cluster ions show promising results in de-sorbing intact large molecules from...
Molecular dynamics (MD) simulations of single argon, CO2 and O2 cluster impacts on diamond (100) an...
Molecular dynamics (MD) simulations of cluster and solid target collisions were performed in order t...
Yasutaka Yamaguchi and Jürgen Gspann. Phys. Rev. B 66, 155408, 2002. Copyright 2002 by the American ...
Seven structures of covalently bonded materials are used as targets of 6 keV Ar12 cluster bombardmen...
Radiation damage cascades in diamond are studied by molecular dynamics simulations employing the Env...
Radiation damage cascades in diamond are studied by molecular dynamics simulations employing the Env...
Radiation damage cascades in diamond are studied by molecular dynamics simulations employing the Env...
Radiation damage cascades in diamond are studied by molecular dynamics simulations employing the Env...
Graphite targets have been irradiated at 90 K and 300 K with 850 MeV and 6 GeV lead ions and with 20...
We show that for impacting argon clusters, both mean projected ranges of the constituents and depths...
The dynamical processes of a low-energy carbon ion collision with the graphene sheet supported by di...
Radiation damage cascades in diamond are studied by molecular dynamics simulations employing the Env...
The dynamical processes of a low-energy carbon ion collision with the graphene sheet supported by di...
Large-scale molecular dynamics simulations of high acceleration energy single cluster impacts on a d...
SIMS experiments using cluster ions show promising results in de-sorbing intact large molecules from...
Molecular dynamics (MD) simulations of single argon, CO2 and O2 cluster impacts on diamond (100) an...
Molecular dynamics (MD) simulations of cluster and solid target collisions were performed in order t...
Yasutaka Yamaguchi and Jürgen Gspann. Phys. Rev. B 66, 155408, 2002. Copyright 2002 by the American ...
Seven structures of covalently bonded materials are used as targets of 6 keV Ar12 cluster bombardmen...
Radiation damage cascades in diamond are studied by molecular dynamics simulations employing the Env...
Radiation damage cascades in diamond are studied by molecular dynamics simulations employing the Env...
Radiation damage cascades in diamond are studied by molecular dynamics simulations employing the Env...
Radiation damage cascades in diamond are studied by molecular dynamics simulations employing the Env...
Graphite targets have been irradiated at 90 K and 300 K with 850 MeV and 6 GeV lead ions and with 20...