activity
20042008
most citedDynamical corrections to the DFT-LDA electron conductance in nanoscale systems

175 citations · 389 across the 6 of their papers we have counts for

collaborators

6 papers

cond-mat.mes-hall2008

Comment on "Molecular Transport Junctions: Clearing Mists"

Massimiliano Di Ventra

This is a comment to a review article by Lindsay and Ratner titled "Molecular Transport Junctions: Clearing Mists".

cond-mat.mes-hall20078 cited

Reply to Comment on "Dynamical corrections to the DFT-LDA electron conductance in nanoscale systems"

Na Sai, Michael Zwolak, Giovanni Vignale +1

We reply to the comment by Jung, Bokes, and Godby (arXiv:0706.0140) on our paper Phys. Rev. Lett. 94, 186810 (2005). We show that the results in their comment should not be taken a…

cond-mat.other200710 cited

Turbulence-induced magnetic flux asymmetry at nanoscale junctions

Neil Bushong, Yuriy Pershin, Massimiliano Di Ventra

It was recently predicted [J. Phys.: Condens. Matter 18, 11059 (2006)] that turbulence of the electron flow may develop at nonadiabatic nanoscale junctions under appropriate condit…

cond-mat.mes-hall200782 cited

Stochastic Time-Dependent Current-Density-Functional Theory

Massimiliano Di Ventra, Roberto D'Agosta

A time-dependent current-density-functional theory for many-particle systems in interaction with arbitrary external baths is developed. We prove that, given the initial quantum sta…

cond-mat.mes-hall2005114 cited

Approach to steady state transport in nanoscale conductors

Neil Bushong, Na Sai, Massimiliano Di Ventra

We show, using a tight-binding model and time-dependent density-functional theory, that a quasi-steady state current can be established dynamically in a finite nanoscale junction w…

cond-mat.mes-hall2004175 cited

Dynamical corrections to the DFT-LDA electron conductance in nanoscale systems

Na Sai, Michael Zwolak, Giovanni Vignale +1

Using time-dependent current-density functional theory, we derive analytically the dynamical exchange-correlation correction to the DC conductance of nanoscale junctions. The corre…