Electron transfer and vibrational modes in the finite molecular chain

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Glushko, E.Ya.
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Fizika Nizkikh Temperatur (Kharkov) | 2000年 / 26卷 / 11期
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A statistical quantum discrete model of a molecular bridge connecting metallic electrodes is proposed. A conductivity theory is developed on the assumption that the main contribution to electron transfer is made by non-equilibrium populated affinity states of a molecule. It is shown that both the field modification of molecular affinity states and the effect of Coulomb blockade lead to suppression of electron transfer. Relationships for different types of electron-vibron interaction in the chain are obtained. The current-voltage characteristics are calculated for different relative positions of the molecular spectrum and the electrodes' chemical potentials. Explanations for the step-like dependencies observed in the I-V characteristics and its asymmetry are provided. The phenomenon of molecular bridge half-integer and fractional charging is clarified.
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页码:1130 / 1143
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