The stability of sodium nanowires is studied by modeling them as infinite uniform jellium cylinders and solving self-consistently for the electronic structure. The total energy per unit length oscillates as a function of the wire radius giving a shell structure. The amplitude of the energy oscillations attenuates regularly, reflecting a supershell structure. We compare our theoretical results with recent experiments [A. I. Yanson et al., Nature 400, 144 (1999); Phys. Rev. Lett. 84, 5832 (2000)] performed by the mechanically controllable break junctions (MCB) technique. The comparison clarifies the origin of the observed shell structure and especially the formation of the quantum beats of the supershell structure and supports the conclusions...
The break-up of a nanowire with an organic ligand shell into discrete droplets is analysed in terms ...
In this thesis, we demonstrate that a disordered superconductor with a high kinetic inductance can r...
The study of the mechanical properties of nanostructures presents new theoretical and experimental c...
The stability of sodium nanowires is studied by modeling them as infinite uniform jellium cylinders ...
The stability of sodium nanowires is studied by modeling them as infinite uniform jellium cylinders ...
The quantum states of a system of particles in a finite spatial domain in general consist of a set o...
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...
We study the conductance during the elongation and breakage of Na nanowires described with the ultim...
We investigate the elongation and breaking process of metallic nanowires using the ultimate jellium ...
On the basis of self-consistent density-functional calculations, it is predicted that three-dimensio...
Energetics and conductance in jellium-modeled nanowires are investigated using the local-density-fun...
We have studied structural and electrical behavior of nanowires generated by mechanical elongation u...
We examine the conductance properties of a chain of Na atoms between two metallic leads in the limit...
Abstract. Size-evolutionary patterns of mechanical and electronic transport properties in junctions ...
The break-up of a nanowire with an organic ligand shell into discrete droplets is analysed in terms ...
In this thesis, we demonstrate that a disordered superconductor with a high kinetic inductance can r...
The study of the mechanical properties of nanostructures presents new theoretical and experimental c...
The stability of sodium nanowires is studied by modeling them as infinite uniform jellium cylinders ...
The stability of sodium nanowires is studied by modeling them as infinite uniform jellium cylinders ...
The quantum states of a system of particles in a finite spatial domain in general consist of a set o...
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...
We study the conductance during the elongation and breakage of Na nanowires described with the ultim...
We investigate the elongation and breaking process of metallic nanowires using the ultimate jellium ...
On the basis of self-consistent density-functional calculations, it is predicted that three-dimensio...
Energetics and conductance in jellium-modeled nanowires are investigated using the local-density-fun...
We have studied structural and electrical behavior of nanowires generated by mechanical elongation u...
We examine the conductance properties of a chain of Na atoms between two metallic leads in the limit...
Abstract. Size-evolutionary patterns of mechanical and electronic transport properties in junctions ...
The break-up of a nanowire with an organic ligand shell into discrete droplets is analysed in terms ...
In this thesis, we demonstrate that a disordered superconductor with a high kinetic inductance can r...
The study of the mechanical properties of nanostructures presents new theoretical and experimental c...