A new subsurface growth mode in the Co-Cu system is reported. This mode provides a direct subsurface growth of Co nanoclusters by depositing Co atoms on the Cu(001) surface in a single stage. The resulting subsurface Co nanoclusters are located 2 monolayers (ML) deep below the atomically flat surface of Cu(001). Although these hidden nanoclusters cannot be directly accessed by a scanning tunneling microscopy/spectroscopy (STM/STS) probe, their shape could be deduced using STM/STS via a careful analysis of the local deformation of the Cu(001) surface as well as local variations of surface electron density induced by the subsurface clusters. A strongly asymmetric shape of the nanoclusters is deduced: they are typically 5-10 nm in lateral size...
We present our experimental and theoretical study on Co diffusion in the first few atomic layers of ...
The deposition of several monolayers of cobalt on germanium (001) substrates results in the formatio...
Hetero-epitaxial growth on a strain-relief vicinal patterned substrate has revealed unprecedented 2D...
A new subsurface growth mode in the Co-Cu system is reported. This mode provides a direct subsurface...
A new subsurface growth mode in the Co-Cu system is reported. This mode provides a direct subsurface...
A new subsurface growth mode in the Co-Cu system is reported. This mode provides a direct subsurface...
A new subsurface growth mode in the Co-Cu system is reported. This mode provides a direct subsurface...
Scanning tunneling microscopy (STM) experiments reveal that Co growth on Ag(1 1 0), at coverages of ...
We present our experimental and theoretical study on Co diffusion in the first few atomic layers of ...
We present our experimental and theoretical study on Co diffusion in the first few atomic layers of ...
We present our experimental and theoretical study on Co diffusion in the first few atomic layers of ...
We present our experimental and theoretical study on Co diffusion in the first few atomic layers of ...
A physical model of the 3D growth of a subsurface cobalt cluster during the epitaxy of cobalt atoms ...
A physical model of the 3D growth of a subsurface cobalt cluster during the epitaxy of cobalt atoms ...
We present our experimental and theoretical study on Co diffusion in the first few atomic layers of ...
We present our experimental and theoretical study on Co diffusion in the first few atomic layers of ...
The deposition of several monolayers of cobalt on germanium (001) substrates results in the formatio...
Hetero-epitaxial growth on a strain-relief vicinal patterned substrate has revealed unprecedented 2D...
A new subsurface growth mode in the Co-Cu system is reported. This mode provides a direct subsurface...
A new subsurface growth mode in the Co-Cu system is reported. This mode provides a direct subsurface...
A new subsurface growth mode in the Co-Cu system is reported. This mode provides a direct subsurface...
A new subsurface growth mode in the Co-Cu system is reported. This mode provides a direct subsurface...
Scanning tunneling microscopy (STM) experiments reveal that Co growth on Ag(1 1 0), at coverages of ...
We present our experimental and theoretical study on Co diffusion in the first few atomic layers of ...
We present our experimental and theoretical study on Co diffusion in the first few atomic layers of ...
We present our experimental and theoretical study on Co diffusion in the first few atomic layers of ...
We present our experimental and theoretical study on Co diffusion in the first few atomic layers of ...
A physical model of the 3D growth of a subsurface cobalt cluster during the epitaxy of cobalt atoms ...
A physical model of the 3D growth of a subsurface cobalt cluster during the epitaxy of cobalt atoms ...
We present our experimental and theoretical study on Co diffusion in the first few atomic layers of ...
We present our experimental and theoretical study on Co diffusion in the first few atomic layers of ...
The deposition of several monolayers of cobalt on germanium (001) substrates results in the formatio...
Hetero-epitaxial growth on a strain-relief vicinal patterned substrate has revealed unprecedented 2D...