Publication | Open Access
Time-dependent density functional theory for quantum transport
103
Citations
92
References
2010
Year
Quantum DynamicEngineeringX. ZhengCharge TransportElectronic DevicesQuantum ComputingNanoelectronicsQuantum Mechanical PropertyNanoscale ModelingCharge Carrier TransportQuantum Dissipation TheoryDevice ModelingQuantum SciencePhysicsQuantum ChemistryQuantum TransportNatural SciencesApplied PhysicsQuantum System
Based on our earlier works [X. Zheng et al., Phys. Rev. B 75, 195127 (2007); J. S. Jin et al., J. Chem. Phys. 128, 234703 (2008)], we propose a rigorous 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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