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Measuring the Degeneracy of Discrete Energy Levels Using a GaAs / AlGaAs Quantum Dot

Date Issued
2016-01-01
Author(s)
Hofmann, A.  
Maisi, V. F.
Gold, C.
Krähenmann, T.
Rössler, C.
Basset, J.
Märki, P.
Reichl, C.
Wegscheider, W.
Ensslin, K.
Ihn, T.
DOI
10.1103/physrevlett.117.206803
Abstract
We demonstrate an experimental method for measuring quantum state degeneracies in bound state energy spectra. The technique is based on the general principle of detailed balance and the ability to perform precise and efficient measurements of energy-dependent tunneling-in and -out rates from a reservoir. The method is realized using a GaAs/AlGaAs quantum dot allowing for the detection of time-resolved single-electron tunneling with a precision enhanced by a feedback control. It is thoroughly tested by tuning orbital and spin degeneracies with electric and magnetic fields. The technique also lends itself to studying the connection between the ground-state degeneracy and the lifetime of the excited states.
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