We study the resistivity scaling in nanometer-sized metallic wires due to surface roughness and grain-boundaries, currently the main cause of electron scattering in nanoscaled interconnects. The resistivity has been obtained with the Boltzmann transport equation, adopting the relaxation time approximation of the distribution function and the effective mass approximation for the conducting electrons. The relaxation times are calculated exactly, using Fermi's golden rule, resulting in a correct relaxation time for every sub-band state contributing to the transport. In general, the relaxation time strongly depends on the sub-band state, something that remained unclear with the methods of previous work. The resistivity scaling is obtained for d...
Artículo de publicación ISIThe resistivity of metallic structures depends on both electron-grain bou...
The size effect of copper interconnect in nanoscale based on various scattering mechanisms including...
4 pages, 3 figuresMotivated by recent experiments on nanowires and carbon nanotubes, we study theore...
The resistivity of metallic thin films and nanowires increases drastically when the film thickness o...
The resistivity of metallic thin films and nanowires increases drastically when the film thickness o...
A self-consistent analytical solution of the multi-subband Boltzmann transport equation with collisi...
We calculate the resistivity contribution of tilted grain boundaries with varying parameters in sub-...
Ando’s model provides a rigorous quantum mechanical framework for electron-surface roughness scatter...
A modeling approach, based on an analytical solution of the semiclassical multi-subband Boltzmann tr...
Conductivity of nanostructures differ significantly from the bulk. One such manifestation is the res...
The resistivity of Cu interconnects increases rapidly with continuously scaling down due to scatteri...
It is well known that the conductivity of metal nanowires decreases with the wire diameter. This siz...
Artículo de publicación ISIWe calculate the electrical resistivity of a metallic specimen, under the...
A simple quantitative model has been proposed for exploring the combined effect of size, shape, and ...
This chapter describes the role of grain boundaries and surfaces in the resistivity of metallic thin...
Artículo de publicación ISIThe resistivity of metallic structures depends on both electron-grain bou...
The size effect of copper interconnect in nanoscale based on various scattering mechanisms including...
4 pages, 3 figuresMotivated by recent experiments on nanowires and carbon nanotubes, we study theore...
The resistivity of metallic thin films and nanowires increases drastically when the film thickness o...
The resistivity of metallic thin films and nanowires increases drastically when the film thickness o...
A self-consistent analytical solution of the multi-subband Boltzmann transport equation with collisi...
We calculate the resistivity contribution of tilted grain boundaries with varying parameters in sub-...
Ando’s model provides a rigorous quantum mechanical framework for electron-surface roughness scatter...
A modeling approach, based on an analytical solution of the semiclassical multi-subband Boltzmann tr...
Conductivity of nanostructures differ significantly from the bulk. One such manifestation is the res...
The resistivity of Cu interconnects increases rapidly with continuously scaling down due to scatteri...
It is well known that the conductivity of metal nanowires decreases with the wire diameter. This siz...
Artículo de publicación ISIWe calculate the electrical resistivity of a metallic specimen, under the...
A simple quantitative model has been proposed for exploring the combined effect of size, shape, and ...
This chapter describes the role of grain boundaries and surfaces in the resistivity of metallic thin...
Artículo de publicación ISIThe resistivity of metallic structures depends on both electron-grain bou...
The size effect of copper interconnect in nanoscale based on various scattering mechanisms including...
4 pages, 3 figuresMotivated by recent experiments on nanowires and carbon nanotubes, we study theore...