We consider dc-electronic transport through a nanowire suspended between normal- and spin-polarized metal leads in the presence of an external magnetic field. We show that magnetomotive coupling between the electrical current through the nanowire and vibrations of the wire may result in self-excitation of mechanical vibrations. The self-excitation mechanism is based on correlations between the occupancy of the quantized electronic energy levels inside the nanowire and the velocity of the nanowire. We derive conditions for the occurrence of the instability and find stable regimes of mechanical oscillations
We theoretically investigate the electromechanical properties of freely suspended nanowires that are...
Strong coupling between electronic and mechanical degrees of freedom is a basic requirement for the ...
Strong coupling between electronic and mechanical degrees of freedom is a basic requirement for the ...
We consider dc-electronic transport through a nanowire suspended between normal- and spin-polarized ...
We consider dc-electronic transport through a nanowire suspended between normal- and spin-polarized ...
We consider dc-electronic transport through a nanowire suspended between normal- and spin-polarized ...
We consider dc-electronic transport through a nanowire suspended between two normal-metal leads in t...
We consider dc-electronic transport through a nanowire suspended between two normal-metal leads in t...
We consider dc-electronic transport through a nanowire suspended between two normal-metal leads in t...
We consider dc-electronic transport through a nanowire suspended between two normal-metal leads in t...
We present a theory of the nanoelectromechanical coupling in a magnetic nanoelectromechanical single...
“Nanoelectromechanical systems” (NEMS) are nanometer-sized mechanical structures coupled to electron...
We investigate dynamical transport properties of interacting electrons moving in a vibrating nanoele...
Over the last two decades nanotechnology has been a very active field of scientific research, both f...
We theoretically investigate the electromechanical properties of freely suspended nanowires that are...
We theoretically investigate the electromechanical properties of freely suspended nanowires that are...
Strong coupling between electronic and mechanical degrees of freedom is a basic requirement for the ...
Strong coupling between electronic and mechanical degrees of freedom is a basic requirement for the ...
We consider dc-electronic transport through a nanowire suspended between normal- and spin-polarized ...
We consider dc-electronic transport through a nanowire suspended between normal- and spin-polarized ...
We consider dc-electronic transport through a nanowire suspended between normal- and spin-polarized ...
We consider dc-electronic transport through a nanowire suspended between two normal-metal leads in t...
We consider dc-electronic transport through a nanowire suspended between two normal-metal leads in t...
We consider dc-electronic transport through a nanowire suspended between two normal-metal leads in t...
We consider dc-electronic transport through a nanowire suspended between two normal-metal leads in t...
We present a theory of the nanoelectromechanical coupling in a magnetic nanoelectromechanical single...
“Nanoelectromechanical systems” (NEMS) are nanometer-sized mechanical structures coupled to electron...
We investigate dynamical transport properties of interacting electrons moving in a vibrating nanoele...
Over the last two decades nanotechnology has been a very active field of scientific research, both f...
We theoretically investigate the electromechanical properties of freely suspended nanowires that are...
We theoretically investigate the electromechanical properties of freely suspended nanowires that are...
Strong coupling between electronic and mechanical degrees of freedom is a basic requirement for the ...
Strong coupling between electronic and mechanical degrees of freedom is a basic requirement for the ...