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arxiv: 1005.0243 · v1 · pith:BCD6E3G4new · submitted 2010-05-03 · ⚛️ physics.chem-ph · physics.comp-ph

Time-dependent density functional theory for quantum transport

classification ⚛️ physics.chem-ph physics.comp-ph
keywords time-dependentelectronicquantumtheoryapproachdensityexactfunctional
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Based on our earlier works [Phys. Rev. B 75, 195127 (2007) & J. Chem. Phys. 128, 234703 (2008)], we propose a formally exact and numerically convenient approach to simulate time-dependent quantum transport from first-principles. The proposed approach combines time-dependent density functional theory with quantum dissipation theory, and results in a useful tool for studying transient dynamics of electronic systems. Within the proposed exact theoretical framework, we construct a number of practical schemes for simulating realistic systems such as nanoscopic electronic devices. Computational cost of each scheme is analyzed, with the expected level of accuracy discussed. As a demonstration, a simulation based on the adiabatic wide-band limit approximation scheme is carried out to characterize the transient current response of a carbon nanotube based electronic device under time-dependent external voltages.

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