Restricted Access.It is now well known that in the extreme quantum limit, dominated by the elastic impurity scattering and the concomitant quantum interference, the zero-temperature d.c.resistance of a strictly one-dimensional disordered system is non-additive and non-self-averaging. While these statistical fluctuations may persist in the case of a physically thin wire, they are implicitly and questionably ignored in higher dimensions. In this work, we have 1% examined this question. Following an invariant imbedding formulation, we first derive a stochastic differential equation for the complex amplitude reflection coefficient and hence obtain a Fokker-Planck equation for the full probability distribution of resistance for a one dimensional...
Restricted Access.The non-self-averaging resistance of a one-dimensional conductor with static disor...
In this letter we study the conductance G through one-dimensional quantum wires with disorder config...
When the size (L) of a one-dimensional metallic conductor is less than the correlation length λ...
It is now well known that in the extreme quantum limit, dominated by the elastic impurity scattering...
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...
At low temperatures the electron elastic mean free path in a disordered conductor can become much sm...
At low temperatures the electron elastic mean free path in a disordered conductor can become much sm...
Following an invariant-imbedding approach, we obtain analytical expressions for the ensemble-average...
Following an invariant-imbedding approach, we obtain analytical expressions for the ensemble-average...
Following an invariant-imbedding approach, we obtain analytical expressions for the ensemble-average...
Restricted AccessFollowing an invariant-imbedding approach, we obtain analytical expressions for the...
We have derived explicitly, the large scale distribution of quantum Ohmic resistance of a disordered...
We have derived explicitly, the large scale distribution of quantum Ohmic resistance of a disordered...
The influence of small electric field on the nature of resistance fluctuations in a one-dimensional ...
Restricted Access.The non-self-averaging resistance of a one-dimensional conductor with static disor...
In this letter we study the conductance G through one-dimensional quantum wires with disorder config...
When the size (L) of a one-dimensional metallic conductor is less than the correlation length λ...
It is now well known that in the extreme quantum limit, dominated by the elastic impurity scattering...
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...
At low temperatures the electron elastic mean free path in a disordered conductor can become much sm...
At low temperatures the electron elastic mean free path in a disordered conductor can become much sm...
Following an invariant-imbedding approach, we obtain analytical expressions for the ensemble-average...
Following an invariant-imbedding approach, we obtain analytical expressions for the ensemble-average...
Following an invariant-imbedding approach, we obtain analytical expressions for the ensemble-average...
Restricted AccessFollowing an invariant-imbedding approach, we obtain analytical expressions for the...
We have derived explicitly, the large scale distribution of quantum Ohmic resistance of a disordered...
We have derived explicitly, the large scale distribution of quantum Ohmic resistance of a disordered...
The influence of small electric field on the nature of resistance fluctuations in a one-dimensional ...
Restricted Access.The non-self-averaging resistance of a one-dimensional conductor with static disor...
In this letter we study the conductance G through one-dimensional quantum wires with disorder config...
When the size (L) of a one-dimensional metallic conductor is less than the correlation length λ...