Quantum Ohmic residual resistance of a thin disordered wire, approximated as a one-dimensional multichannel conductor, is known to scale exponentially with length. This nonadditivity is shown to imply (i) a low-frequency noise-power spectrum proportional to -ln(Ω)/Ω, and (ii) a dispersive capacitative impedance proportional to tanh(√iΩ )/ √iΩ. A deep connection to the quantum Brownian motion with linear dynamical frictional coupling to a harmonic-oscillator bath is pointed out and interpreted in physical terms
Diffusive transport properties of a quantum Brownian particle moving in a tilted spatially periodic ...
For a dynamically disordered continuum it is found that the exact quantum mechanical mean square dis...
We study the transport properties of ultrathin disordered nanowires in the neighborhood of the super...
Quantum Ohmic residual resistance of a thin disordered wire, approximated as a one-dimensional multi...
Restricted Access.It is now well known that in the extreme quantum limit, dominated by the elastic i...
It is now well known that in extreme quantum limit, dominated by the elastic impurity scattering and...
Restricted Access.The residual resistance of a microscopically disordered conductor is a non-additiv...
It is now well known that in the extreme quantum limit, dominated by the elastic impurity scattering...
The mobility and the diffusion coefficient of a particle on a biased tight-binding lattice in the pr...
We have derived explicitly, the large scale distribution of quantum Ohmic resistance of a disordered...
We study the electronic transport properties of the Anderson model on a strip, modeling a q...
At low temperatures the electron elastic mean free path in a disordered conductor can become much sm...
In this letter we study the conductance G through one-dimensional quantum wires with disorder config...
ABSTRACT. We study the electronic transport properties of the Anderson model on a strip, modeling a ...
Arguments are presented that the T=0 conductance G of a disordered electronic system depends on its ...
Diffusive transport properties of a quantum Brownian particle moving in a tilted spatially periodic ...
For a dynamically disordered continuum it is found that the exact quantum mechanical mean square dis...
We study the transport properties of ultrathin disordered nanowires in the neighborhood of the super...
Quantum Ohmic residual resistance of a thin disordered wire, approximated as a one-dimensional multi...
Restricted Access.It is now well known that in the extreme quantum limit, dominated by the elastic i...
It is now well known that in extreme quantum limit, dominated by the elastic impurity scattering and...
Restricted Access.The residual resistance of a microscopically disordered conductor is a non-additiv...
It is now well known that in the extreme quantum limit, dominated by the elastic impurity scattering...
The mobility and the diffusion coefficient of a particle on a biased tight-binding lattice in the pr...
We have derived explicitly, the large scale distribution of quantum Ohmic resistance of a disordered...
We study the electronic transport properties of the Anderson model on a strip, modeling a q...
At low temperatures the electron elastic mean free path in a disordered conductor can become much sm...
In this letter we study the conductance G through one-dimensional quantum wires with disorder config...
ABSTRACT. We study the electronic transport properties of the Anderson model on a strip, modeling a ...
Arguments are presented that the T=0 conductance G of a disordered electronic system depends on its ...
Diffusive transport properties of a quantum Brownian particle moving in a tilted spatially periodic ...
For a dynamically disordered continuum it is found that the exact quantum mechanical mean square dis...
We study the transport properties of ultrathin disordered nanowires in the neighborhood of the super...