In this work we report the study of conformation dependent electronic transport properties of DNA double-helix within tight-binding framework including its helical symmetry. We have studied the changes in localization properties of DNA as we alter the number of stacked bases within a pitch of the double-helix keeping the total number of nucleotides in the DNA chain fixed. We take three DNA sequences, two of them are periodic and one is random and observe that localization length increases as we increase the radius of DNA double-helix i.e., number of nucleotides within a pitch. We have also investigated the effect of backbone energetic on the I-V response of the system and we find that in presence of helical symmetry, depending on the interp...
In this thesis an efficient method has been developed for calculating the electronic structure and c...
The thermodynamical stability of DNA minicircles is investigated by means of path integral technique...
We investigate quantum transport characteristics of a ladder model, which effectively mimics the top...
We present a tight-binding study of conformation dependent electronic transport properties of DNA do...
We study the electronic properties of DNA by way of a tight-binding model applied to four particular...
DNA is a promising molecule for applications in molecular electronics because of its unique electron...
DNA is a promising molecule for applications in molecular electronics because of its unique electron...
AbstractWe study the electronic properties of DNA by way of a tight-binding model applied to four pa...
The idea of incorporating DNA molecules in designing nanoscale electronic devices has drawn the att...
In order to interpret recent experimental studies of the dependence of conductance of ds-DNA as the ...
We present a model to describe electrical conductivity along the DNA double helix. In this model, DN...
We consider a class of synthetic DNA molecules based on a quasiperiodic arrangement of their constit...
We investigate the influence of a dissipative environment which effectively comprises the effects of...
Nucleic acids physical properties have been investigated by theoretical methods based both on fully ...
Thesis (Ph.D.)--University of Washington, 2015Nucleic acids play a vital role in many biological sys...
In this thesis an efficient method has been developed for calculating the electronic structure and c...
The thermodynamical stability of DNA minicircles is investigated by means of path integral technique...
We investigate quantum transport characteristics of a ladder model, which effectively mimics the top...
We present a tight-binding study of conformation dependent electronic transport properties of DNA do...
We study the electronic properties of DNA by way of a tight-binding model applied to four particular...
DNA is a promising molecule for applications in molecular electronics because of its unique electron...
DNA is a promising molecule for applications in molecular electronics because of its unique electron...
AbstractWe study the electronic properties of DNA by way of a tight-binding model applied to four pa...
The idea of incorporating DNA molecules in designing nanoscale electronic devices has drawn the att...
In order to interpret recent experimental studies of the dependence of conductance of ds-DNA as the ...
We present a model to describe electrical conductivity along the DNA double helix. In this model, DN...
We consider a class of synthetic DNA molecules based on a quasiperiodic arrangement of their constit...
We investigate the influence of a dissipative environment which effectively comprises the effects of...
Nucleic acids physical properties have been investigated by theoretical methods based both on fully ...
Thesis (Ph.D.)--University of Washington, 2015Nucleic acids play a vital role in many biological sys...
In this thesis an efficient method has been developed for calculating the electronic structure and c...
The thermodynamical stability of DNA minicircles is investigated by means of path integral technique...
We investigate quantum transport characteristics of a ladder model, which effectively mimics the top...