Using a first-principles density functional method, we have studied the electronic structure, electron–phonon coupling, and quantum transport properties of atomic wires of Ag, Al, Au, and Cu. Non-equilibrium Green’s function-based transport studies of finite atomic wires suggest that the conductivity of Al atomic wires is higher than that of Ag, Au, and Cu in contrast to the bulk where Al has the lowest conductivity among these systems. This is attributed to the higher number of eigenchannels in Al wires, which becomes the determining factor in the ballistic limit. On the basis of density functional perturbation theory, we find that the electron–phonon coupling constant of the Al atomic wire is lowest among the four metals studied, and more...
We present an ab initio evaluation of electron scattering mechanisms in Al interconnects from a back...
The dramatic expansion of the electronics industry over the past 40 years has been based on the prog...
The dramatic expansion of the electronics industry over the past 40 years has been based on the prog...
We report a first-principles calculation of structural properties and quantum conductance of aluminu...
Quantum conductance in narrow channels has been well understood by using the two-dimensional electr...
Based on the non-equilibrium Green's function density functional tight binding method, electronic tr...
The factors governing electronic transport properties of copper and gold atomic-size contacts are th...
Using a first-principles density-functional method we model electron transport through linear chains...
We perform first-principles calculation to investigate the dynamic conductance of atomic wires of th...
Molecular wires are covalently bonded to gold electrodes—to form metal–molecule–metal junctions—by f...
The electronic and ionic structures of warm expanded aluminum are determined self-consistently using...
We have carried out first-principles electronic structure and total energy calculations for a series...
Metal atom wires represent an important class of nanomaterials in the development of future electron...
The electronic and ionic structures of warm expanded aluminum are determined self-consistently using...
We have investigated quantum transport through long wires in which a section consists of one or seve...
We present an ab initio evaluation of electron scattering mechanisms in Al interconnects from a back...
The dramatic expansion of the electronics industry over the past 40 years has been based on the prog...
The dramatic expansion of the electronics industry over the past 40 years has been based on the prog...
We report a first-principles calculation of structural properties and quantum conductance of aluminu...
Quantum conductance in narrow channels has been well understood by using the two-dimensional electr...
Based on the non-equilibrium Green's function density functional tight binding method, electronic tr...
The factors governing electronic transport properties of copper and gold atomic-size contacts are th...
Using a first-principles density-functional method we model electron transport through linear chains...
We perform first-principles calculation to investigate the dynamic conductance of atomic wires of th...
Molecular wires are covalently bonded to gold electrodes—to form metal–molecule–metal junctions—by f...
The electronic and ionic structures of warm expanded aluminum are determined self-consistently using...
We have carried out first-principles electronic structure and total energy calculations for a series...
Metal atom wires represent an important class of nanomaterials in the development of future electron...
The electronic and ionic structures of warm expanded aluminum are determined self-consistently using...
We have investigated quantum transport through long wires in which a section consists of one or seve...
We present an ab initio evaluation of electron scattering mechanisms in Al interconnects from a back...
The dramatic expansion of the electronics industry over the past 40 years has been based on the prog...
The dramatic expansion of the electronics industry over the past 40 years has been based on the prog...