Our theoretical study reveals the dependence of quantum conductance of Au-Co nanowires on their atomic structure. The results show the emergence of spin-filter state in one-dimensional Au-Co bimetallic nanowires. We found the existence of two transmission regime in Au-Co nanowires with low and high conductivity 1G0 and 2G0 for “zig-zag” and linear nanowire correspondingly. The study of transmission spectra of Au-Co nanowires reveals the control capability of spin transport regime by changing of bias voltage between bulk electrodes
Many of the most intriguing quantum effects are observed or could be measured in transport experimen...
International audienceWe have performed molecular dynamics (MD) simulations of stretched Au-x-Co1-x ...
This thesis presents spin transport studies of ferromagnetic nano-scaled tunneling devices fabricate...
Our theoretical study reveals the dependence of quantum conductance of Au-Co nanowires on their atom...
The fact that the resistance of propagating electrons in solids depends on their spin orientation ha...
Scanning tunnelling microscopy and break-junction experiments realize metallic and molecular nanocon...
We analyze spin-dependent energetics and conductance for one-dimensional (1D) atomic carbon wires co...
The motion of an electron and its spin are generally not coupled. However in a one-dimensional mater...
Electronic transport properties of the Au nanostructure are investigated using both experimental and...
The scattering-based approach for calculating the ballistic conductance of open quantum systems is g...
The scattering-based approach for calculating the ballistic conductance of open quantum systems is g...
We have carried out fully relativistic full-potential, spin-polarized, all-electron density-function...
The effects of spin-orbit coupling on the conductance of molecular devices made with Au electrodes a...
Density functional theory in conjunction with nonequilibrium Green’s functions has been used to expl...
We consider electronic transport through semiconducting nanowires (W) with spin-orbit interaction (S...
Many of the most intriguing quantum effects are observed or could be measured in transport experimen...
International audienceWe have performed molecular dynamics (MD) simulations of stretched Au-x-Co1-x ...
This thesis presents spin transport studies of ferromagnetic nano-scaled tunneling devices fabricate...
Our theoretical study reveals the dependence of quantum conductance of Au-Co nanowires on their atom...
The fact that the resistance of propagating electrons in solids depends on their spin orientation ha...
Scanning tunnelling microscopy and break-junction experiments realize metallic and molecular nanocon...
We analyze spin-dependent energetics and conductance for one-dimensional (1D) atomic carbon wires co...
The motion of an electron and its spin are generally not coupled. However in a one-dimensional mater...
Electronic transport properties of the Au nanostructure are investigated using both experimental and...
The scattering-based approach for calculating the ballistic conductance of open quantum systems is g...
The scattering-based approach for calculating the ballistic conductance of open quantum systems is g...
We have carried out fully relativistic full-potential, spin-polarized, all-electron density-function...
The effects of spin-orbit coupling on the conductance of molecular devices made with Au electrodes a...
Density functional theory in conjunction with nonequilibrium Green’s functions has been used to expl...
We consider electronic transport through semiconducting nanowires (W) with spin-orbit interaction (S...
Many of the most intriguing quantum effects are observed or could be measured in transport experimen...
International audienceWe have performed molecular dynamics (MD) simulations of stretched Au-x-Co1-x ...
This thesis presents spin transport studies of ferromagnetic nano-scaled tunneling devices fabricate...