Time-resolved detection of individual electrons in a quantum dot
R. Schleser, E. Ruh, Thomas Ihn, K. Ensslin, D. C. Driscoll, A. C. Gossard
Abstract
Open-access reader
R. Schleser, E. Ruh, Thomas Ihn, K. Ensslin, D. C. Driscoll, A. C. Gossard
Abstract
Open-access reader
We present measurements on a quantum dot and a nearby, capacitively coupled, quantum point contact used as a charge detector. With the dot being weakly coupled to only a single reservoir, the transfer of individual electrons onto and off the dot can be observed in real time in the current signal from the quantum point contact. From these time-dependent traces, the quantum mechanical coupling between dot and reservoir can be extracted quantitatively. A similar analysis allows the determination of the occupation probability of the dot states.
OpenAlex reports 140 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
We present measurements on a quantum dot and a nearby, capacitively coupled, quantum point contact used as a charge detector. With the dot being weakly coupled to only a single reservoir, the transfer of individual electrons onto and off the dot can be observed in real time in the current signal from the quantum point contact. From these time-dependent traces, the quantum mechanical coupling between dot and reservoir can be extracted quantitatively. A similar analysis allows the determination of the occupation probability of the dot states.
Key concepts: Quantum dot, Quantum point contact, Electron, Physics, Quantum dot laser, Charge (physics), Coupling (piping), Detector