Thermoelectric effects in quantum dots
arXiv:0904.2326 · doi:10.1016/j.physb.2009.07.118
Abstract
We report a numerical renormalization-group study of the thermoelectric effect in the single-electron transistor (SET) and side-coupled geometries. As expected, the computed thermal conductance and thermopower curves show signatures of the Kondo effect and of Fano interference. The thermopower curves are also affected by particle-hole asymmetry.
8 pages with 3 figures; accepted for publication in Physica B (special issue 'Strongly Correlated Electron Systems-SCES2008')
References in corpus (7)
- Kondo Correlations and the Fano Effect in Closed AB-Interferometers
- Fano and Kondo resonance in electronic current through nanodevices
- Thermopower of a Kondo-correlated quantum dot
- Observation of the Fano-Kondo Anti-Resonance in a Quantum Wire with a Side-Coupled Quantum Dot
- Transmission Phase of a Quantum Dot with Kondo Correlation Near the Unitary Limit
- Thermopower of Aharonov-Bohm Interferometer with a Quantum Dot
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Cited by in corpus (13)
- Thermoelectric transport through strongly correlated quantum dots
- Large enhancement of thermoelectric effects in a double quantum dot system due to interference and Coulomb correlation phenomena
- Spin-dependent thermoelectric phenomena in a quantum dot attached to ferromagnetic and superconducting electrodes
- Thermoelectric transport properties of a T-shaped double quantum dot system in the Coulomb blockade regime
- The effect of Coulomb interactions on thermoelectric properties of quantum dots
- Transport through side-coupled multilevel double quantum dots in the Kondo regime
- Spin-dependent thermoelectric properties of a Kondo-correlated quantum dot with Rashba spin-orbit coupling
- The effect of dephasing on thermoelectric efficiency of molecular junctions
- Universality and thermoelectric transport properties of quantum dot systems
- Charge and Spin Thermoelectric Transport in Benzene-Based Molecular Nano-Junctions: A Quantum Many-Body Study
- Spin-dependent beating patterns in thermoelectric properties: Filtering the carriers of the heat flux in a Kondo adatom system
- Spin-orbit coupling effects over thermoelectric transport properties in quantum dots
- Thermopower signatures and spectroscopy of the canyon of conductance suppression