Time-of-Flight Measurements of Single-Electron Wave Packets in Quantum-Hall Edge States
arXiv:1512.02906 · doi:10.1103/PhysRevLett.116.126803
Abstract
We report time-of-flight measurements on electrons travelling in quantum-Hall edge states. Hot-electron wave packets are emitted one per cycle into edge states formed along a depleted sample boundary. The electron arrival time is detected by driving a detector barrier with a square wave that acts as a shutter. By adding an extra path using a deflection barrier, we measure a delay in the arrival time, from which the edge-state velocity is deduced. We find that follows dependence, in good agreement with the drift. The edge potential is estimated from the energy-dependence of using a harmonic approximation.