Pt deposited onto a Ge(001) surface gives rise to the spontaneous formation of atomic nanowires on a mixed Pt-Ge surface after high-temperature annealing. We study possible structures of the mixed surface and the nanowires by total energy (density functional theory) calculations. Experimental scanning-tunneling microscopy images are compared to the calculated local densities of states. On the basis of this comparison and the stability of the structures, we conclude that the formation of nanowires is driven by an increased concentration of Pt atoms in the Ge surface layers. Surprisingly, the atomic nanowires consist of Ge instead of Pt atoms
The deposition of small amounts of Pt on a Ge(001) surface gives rise to the formation of monatomic ...
Pt deposited on a Ge(001) surface spontaneously forms nanowire arrays. These nanowires are thermodyn...
Pt deposited on a Ge(001) surface spontaneously forms nanowire arrays. These nanowires are thermodyn...
Pt deposited onto a Ge(001) surface gives rise to the spontaneous formation of atomic nanowires on a...
Pt deposited onto a Ge(001) surface gives rise to the spontaneous formation of atomic nanowires on a...
Pt deposited onto a Ge(001) surface gives rise to the spontaneous formation of atomic nanowires on a...
We study formation of the nanowires formed after deposition of Pt on a Ge(001) surface. The nanowire...
Pt deposited onto a Ge001 surface gives rise to the spontaneous formation of atomic nanowires on a m...
We study formation of the nanowires formed after deposition of Pt on a Ge(001) surface. The nanowire...
Pt deposited on a Ge(001) surface spontaneously forms nanowire arrays. These nanowires are thermodyn...
We study formation of the nanowires formed after deposition of Pt on a Ge(001) surface. The nanowire...
We study formation of the nanowires formed after deposition of Pt on a Ge(001) surface. The nanowire...
Nanowire (NW) arrays form spontaneously after high temperature annealing of a sub monolayer depositi...
Absorption of Pt on the Ge(001) surface results in stable self-organized Pt nanowires, extending ov...
The deposition of small amounts of Pt on a Ge(001) surface gives rise to the formation of monatomic ...
The deposition of small amounts of Pt on a Ge(001) surface gives rise to the formation of monatomic ...
Pt deposited on a Ge(001) surface spontaneously forms nanowire arrays. These nanowires are thermodyn...
Pt deposited on a Ge(001) surface spontaneously forms nanowire arrays. These nanowires are thermodyn...
Pt deposited onto a Ge(001) surface gives rise to the spontaneous formation of atomic nanowires on a...
Pt deposited onto a Ge(001) surface gives rise to the spontaneous formation of atomic nanowires on a...
Pt deposited onto a Ge(001) surface gives rise to the spontaneous formation of atomic nanowires on a...
We study formation of the nanowires formed after deposition of Pt on a Ge(001) surface. The nanowire...
Pt deposited onto a Ge001 surface gives rise to the spontaneous formation of atomic nanowires on a m...
We study formation of the nanowires formed after deposition of Pt on a Ge(001) surface. The nanowire...
Pt deposited on a Ge(001) surface spontaneously forms nanowire arrays. These nanowires are thermodyn...
We study formation of the nanowires formed after deposition of Pt on a Ge(001) surface. The nanowire...
We study formation of the nanowires formed after deposition of Pt on a Ge(001) surface. The nanowire...
Nanowire (NW) arrays form spontaneously after high temperature annealing of a sub monolayer depositi...
Absorption of Pt on the Ge(001) surface results in stable self-organized Pt nanowires, extending ov...
The deposition of small amounts of Pt on a Ge(001) surface gives rise to the formation of monatomic ...
The deposition of small amounts of Pt on a Ge(001) surface gives rise to the formation of monatomic ...
Pt deposited on a Ge(001) surface spontaneously forms nanowire arrays. These nanowires are thermodyn...
Pt deposited on a Ge(001) surface spontaneously forms nanowire arrays. These nanowires are thermodyn...