An ab initio Non-Equilibrium Green Function Approach to Charge Transport: Dithiolethine
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Abstract
We present a novel ab initio non-equilibrium approach to calculate the current across a molecular junction. The method rests on a wavefunction-based full ab initio description of the central region of the junction combined with a tight binding approximation for the electrodes in the frame of the Keldysh Green function formalism. Our procedure is demonstrated for a dithiolethine molecule located between silver electrodes. The main conducting channel is identified and the full current--voltage characteristic is calculated.
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Cite this article:
Alexander Schnurpfeil, SONG Bo, Martin Albrecht. An ab initio Non-Equilibrium Green Function Approach to Charge Transport: Dithiolethine[J]. Chin. Phys. Lett., 2006, 23(3): 689-692.
Alexander Schnurpfeil, SONG Bo, Martin Albrecht. An ab initio Non-Equilibrium Green Function Approach to Charge Transport: Dithiolethine[J]. Chin. Phys. Lett., 2006, 23(3): 689-692.
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Alexander Schnurpfeil, SONG Bo, Martin Albrecht. An ab initio Non-Equilibrium Green Function Approach to Charge Transport: Dithiolethine[J]. Chin. Phys. Lett., 2006, 23(3): 689-692.
Alexander Schnurpfeil, SONG Bo, Martin Albrecht. An ab initio Non-Equilibrium Green Function Approach to Charge Transport: Dithiolethine[J]. Chin. Phys. Lett., 2006, 23(3): 689-692.
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