Hofmann A, Maisi V F, Gold C, Krähenmann T, Rössler C, Basset J, Märki P, Reichl C, Wegscheider W, Ensslin K, Ihn T
Solid State Physics Laboratory, ETH Zurich, CH-8093 Zurich, Switzerland.
Phys Rev Lett. 2016 Nov 11;117(20):206803. doi: 10.1103/PhysRevLett.117.206803.
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.
我们展示了一种用于测量束缚态能谱中量子态简并度的实验方法。该技术基于细致平衡的一般原理以及对从一个库中与能量相关的隧穿进和隧穿出速率进行精确且高效测量的能力。该方法通过使用一个GaAs/AlGaAs量子点来实现,该量子点允许通过反馈控制增强精度来检测时间分辨的单电子隧穿。通过利用电场和磁场调节轨道和自旋简并度对其进行了全面测试。该技术也有助于研究基态简并度与激发态寿命之间的联系。