We present a theoretical analysis of the effects of the environment on charge transport in double-stranded synthetic poly(G)-poly(C) DNA molecules attached to two ideal leads. Coupling of the DNA to the environment results in two effects: (i) localization of carrier functions due to static disorder and (ii) phonon-induced scattering of the carriers between the localized states, resulting in hopping conductivity. A nonlinear Pauli master equation for populations of localized states is used to describe the hopping transport and calculate the electric current as a function of the applied bias. We demonstrate that, although the electronic gap in the density of states shrinks as the disorder increases, the voltage gap in the I-V characteristics ...
Measurements of electron transfer rates as well as of charge transport characteristics in DNA produc...
Electronic transport through DNA wires in the presence of a strong dissipative environment is invest...
Electronic transport through DNA wires in the presence of a strong dissipative environment is invest...
We present a theoretical analysis of the effects of the environment on charge transport in double-st...
We present a theoretical analysis of the effects of the environment on charge transport in double-st...
We present a theoretical analysis of the effects of the environment on charge transport in double-st...
We present a theoretical analysis of the effects of the environment on charge transport in double-st...
Recent experiments indicated that disorder effect in deoxyribonucleic acid (DNA) may lead to a trans...
Recent experiments indicated that disorder effect in deoxyribonucleic acid (DNA) may lead to a trans...
ABSTRACT We study the electronic properties of DNA by way of a tight-binding model applied to four p...
Conductor or insulator? The debate about the conductivity of DNA have been recently revived due to c...
We are investigating the electronic properties of DNA by looking at a tight-binding model and four D...
We study the electronic properties of DNA by way of a tight-binding model applied to four particular...
AbstractWe study the electronic properties of DNA by way of a tight-binding model applied to four pa...
AbstractWe study the electronic properties of DNA by way of a tight-binding model applied to four pa...
Measurements of electron transfer rates as well as of charge transport characteristics in DNA produc...
Electronic transport through DNA wires in the presence of a strong dissipative environment is invest...
Electronic transport through DNA wires in the presence of a strong dissipative environment is invest...
We present a theoretical analysis of the effects of the environment on charge transport in double-st...
We present a theoretical analysis of the effects of the environment on charge transport in double-st...
We present a theoretical analysis of the effects of the environment on charge transport in double-st...
We present a theoretical analysis of the effects of the environment on charge transport in double-st...
Recent experiments indicated that disorder effect in deoxyribonucleic acid (DNA) may lead to a trans...
Recent experiments indicated that disorder effect in deoxyribonucleic acid (DNA) may lead to a trans...
ABSTRACT We study the electronic properties of DNA by way of a tight-binding model applied to four p...
Conductor or insulator? The debate about the conductivity of DNA have been recently revived due to c...
We are investigating the electronic properties of DNA by looking at a tight-binding model and four D...
We study the electronic properties of DNA by way of a tight-binding model applied to four particular...
AbstractWe study the electronic properties of DNA by way of a tight-binding model applied to four pa...
AbstractWe study the electronic properties of DNA by way of a tight-binding model applied to four pa...
Measurements of electron transfer rates as well as of charge transport characteristics in DNA produc...
Electronic transport through DNA wires in the presence of a strong dissipative environment is invest...
Electronic transport through DNA wires in the presence of a strong dissipative environment is invest...