Steady-State Density Functional Theory for Correlated Quantum Transport and Spectral Functions

ORAL · Invited

Abstract

Steady-State Density Functional Theory (i-DFT) is a formalism to describe open quantum systems in nonequilibrium steady states. i-DFT is based on the one-to-one correspondence between the pair density and steady current and the pair local potential and applied voltage. The resulting Kohn-Sham system features two exchange-correlation (xc) potentials, a local xc potential and an xc contribution to the voltage. After revisiting the fundamentals of i-DFT we apply the formalism to correlated quantum dots in the Coulomb blockade regime. We show that the well-known discontinuity of the DFT xc potential at integer particle number bifurcates at finite currents. The i-DFT formalism can also be used to calculate bulk spectral functions. We present an approximation to the xc voltage suited to describe a paradigm in the field of strongly correlated electrons, i.e., the Mott metal-insulator transition.

Publication: 1) "Mott Metal-Insulator Transition from Steady-State Density Functional Theory",
David Jacob, Gianluca Stefanucci and Stefan Kurth
Physical Review Letters 125, 216401 (2020).
2) "Nonequilibrium Spectral Functions from Multiterminal Steady-State Density Functional Theory",
Stefan Kurth, David Jacob, Nahual Sobrino and Gianluca Stefanucci
Physical Review B 100, 085114 (2019).
3) "Many-Body Spectral Functions from Steady State Density Functional Theory"
David Jacob and Stefan Kurth
Nano Letters 18, 2086 (2018)
4) "Nonequilibrium Anderson Model Made Simple with Density Functional Theory",
Stefan Kurth and Gianluca Stefanucci
Physical Review B 94, 241103(R) (2016).
5) "Steady-State Density Functional Theory for Finite Bias Conductances",
Gianluca Stefanucci and Stefan Kurth
Nano Letters 15, 8020 (2015).

Presenters

  • Gianluca Stefanucci

    University of Rome Tor Vergata, Univ of Roma

Authors

  • Gianluca Stefanucci

    University of Rome Tor Vergata, Univ of Roma

  • David Jacob

    Nano-Bio Spectroscopy Group and European Theoretical Spectroscopy Facility (ETSF), Departamento Polímeros y Materiales Avanzados:Física, Química y Tecnología, Universidad del

  • Stefan Kurth

    Nano-Bio Spectroscopy Group and European Theoretical Spectroscopy Facility (ETSF), Departamento Polímeros y Materiales Avanzados:Física, Química y Tecnología, Universidad del