Anomalous Transmission Phase of a Kondo-Correlated Quantum Dot
arXiv:cond-mat/0401169 · doi:10.1103/PhysRevB.71.045330
Abstract
We study phase evolution of transmission through a quantum dot with Kondo correlations. By considering a model that includes nonresonant transmission as well as the Anderson impurity, we explain unusually large phase evolution of about in the Kondo valley observed in recent experiments. We argue that this anomalous phase evolution is a universal property that can be found in the high-temperature Kondo phase in the presence of the time-reversal symmetry.
5 pages, 3 figures
References in corpus (4)
- Kondo Correlations and the Fano Effect in Closed AB-Interferometers
- Fano and Kondo resonance in electronic current through nanodevices
- Transmission Phase of a Quantum Dot with Kondo Correlation Near the Unitary Limit
- The Enhanced Sensitivity of the Transmission Phase of a Quantum Dot to Kondo Correlations
Cited by in corpus (4)
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- Photon-assisted electron transport through a three-terminal quantum dot system with nonresonant tunneling channels
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- Dephasing and Measurement Efficiency via a Quantum Dot Detector