We investigate the elongation and breaking process of metallic nanowires using the ultimate jellium model in self-consistent density-functional calculations of the electronic structure. In this model the positive background charge deforms to follow the electron density and the energy minimization determines the shape of the system. However, we restrict the shape of the wires by assuming rotational invariance about the wire axis. First, we study the stability of infinite wires and show that the quantum-mechanical shell structure stabilizes the uniform cylindrical geometry at the given magic radii. Next, we focus on finite nanowires supported by leads modeled by freezing the shape of a uniform wire outside the constriction volume. We calculat...
During the last two decades, the study of the properties of nanowires has been one of the keystones ...
We study the conductance during the elongation and breakage of Na nanowires described with the ultim...
When a macroscopic metallic wire is subject to a perturbation, it will neck down to its most stable ...
We investigate the elongation and breaking process of metallic nanowires using the ultimate jellium ...
We investigate the elongation and breaking process of metallic nanowires using the ultimate jellium ...
We investigate the elongation and breaking process of metallic nanowires using the ultimate jellium ...
The ground-state electronic structures of cylindrical quantum wires are studied within the stabilize...
The ground-state electronic structures of cylindrical quantum wires are studied within the stabilize...
The ground-state electronic structures of cylindrical quantum wires are studied within the stabilize...
Energetics and conductance in jellium-modeled nanowires are investigated using the local-density-fun...
The ground-state electronic structures of cylindrical quantum wires are studied within the stabilize...
The stability of sodium nanowires is studied by modeling them as infinite uniform jellium cylinders ...
The ground-state electronic structures of cylindrical quantum wires are studied within the stabilize...
In this thesis, we have systematically investigated the stability, surface dynamics, electronic tran...
On the basis of self-consistent density-functional calculations, it is predicted that three-dimensio...
During the last two decades, the study of the properties of nanowires has been one of the keystones ...
We study the conductance during the elongation and breakage of Na nanowires described with the ultim...
When a macroscopic metallic wire is subject to a perturbation, it will neck down to its most stable ...
We investigate the elongation and breaking process of metallic nanowires using the ultimate jellium ...
We investigate the elongation and breaking process of metallic nanowires using the ultimate jellium ...
We investigate the elongation and breaking process of metallic nanowires using the ultimate jellium ...
The ground-state electronic structures of cylindrical quantum wires are studied within the stabilize...
The ground-state electronic structures of cylindrical quantum wires are studied within the stabilize...
The ground-state electronic structures of cylindrical quantum wires are studied within the stabilize...
Energetics and conductance in jellium-modeled nanowires are investigated using the local-density-fun...
The ground-state electronic structures of cylindrical quantum wires are studied within the stabilize...
The stability of sodium nanowires is studied by modeling them as infinite uniform jellium cylinders ...
The ground-state electronic structures of cylindrical quantum wires are studied within the stabilize...
In this thesis, we have systematically investigated the stability, surface dynamics, electronic tran...
On the basis of self-consistent density-functional calculations, it is predicted that three-dimensio...
During the last two decades, the study of the properties of nanowires has been one of the keystones ...
We study the conductance during the elongation and breakage of Na nanowires described with the ultim...
When a macroscopic metallic wire is subject to a perturbation, it will neck down to its most stable ...