2003•Physical review. B, Condensed matterOpen access

Fano resonance in electronic transport through a quantum wire with a side-coupled quantum dot:X-boson treatment

R. Franco, Marcos Sergio Figueira, E. V. Anda

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Abstract

The transport through a quantum wire with a side-coupled quantum dot is studied. We use the X-boson treatment for the Anderson single impurity model in the limit of $U=\ensuremath{\infty}.$ The conductance presents a minimum for values of $T=0$ in the crossover from mixed valence to Kondo regime due to a destructive interference between the ballistic channel associated with the quantum wire and the quantum dot channel. We obtain the experimentally studied Fano behavior of the resonance. The conductance as a function of temperature exhibits a logarithmic and universal behavior, that agrees with recent experimental results.

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The transport through a quantum wire with a side-coupled quantum dot is studied. We use the X-boson treatment for the Anderson single impurity model in the limit of $U=\ensuremath{\infty}.$ The conductance presents a minimum for values of $T=0$ in the crossover from mixed valence to Kondo regime due to a destructive interference between the ballistic channel associated with the quantum wire and the quantum dot channel. We obtain the experimentally studied Fano behavior of the resonance. The conductance as a function of temperature exhibits a logarithmic and universal behavior, that agrees with recent experimental results.

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Available abstract

The transport through a quantum wire with a side-coupled quantum dot is studied. We use the X-boson treatment for the Anderson single impurity model in the limit of $U=\ensuremath{\infty}.$ The conductance presents a minimum for values of $T=0$ in the crossover from mixed valence to Kondo regime due to a destructive interference between the ballistic channel associated with the quantum wire and the quantum dot channel. We obtain the experimentally studied Fano behavior of the resonance. The conductance as a function of temperature exhibits a logarithmic and universal behavior, that agrees with recent experimental results.

Key concepts: Condensed matter physics, Physics, Quantum dot, Quantum wire, Fano resonance, Conductance, Kondo effect, Conductance quantum

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