Scaling of the Kondo zero bias peak in a hole quantum dot at finite temperatures
arXiv:1305.1381 · doi:10.1103/PhysRevB.87.201104
Abstract
We have measured the zero bias peak in differential conductance in a hole quantum dot. We have scaled the experimental data with applied bias and compared to real time renormalization group calculations of the differential conductance as a function of source-drain bias in the limit of zero temperature and at finite temperatures. The experimental data show deviations from the T=0 calculations at low bias, but are in very good agreement with the finite T calculations. The Kondo temperature T_K extracted from the data using T=0 calculations, and from the peak width at 2/3 maximum, is significantly higher than that obtained from finite T calculations.
Accepted to Phys. Rev. B (Rapid)
References in corpus (5)
- Kondo effect in quantum dots
- Spin-1/2 Kondo effect in an InAs nanowire quantum dot: the Unitary limit, conductance scaling and Zeeman splitting
- Nonequilibrium Kondo model: Crossover from weak to strong coupling
- Ballistic transport in induced one-dimensional hole systems
- Universal lineshape of the Kondo zero-bias anomaly in a quantum dot
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