Characterization and control of charge transfer in a tunnel junction
Abstract
Charge transfer in a tunnel junction is studied under dc and ac voltage bias using quantum shot noise. Under dc voltage bias , spectral density of noise measured within a very large bandwidth enables to deduce the current-current correlator in the time domain by Fourier transform. This correlator exhibits regular oscillations proving that electrons try to cross the junction regularly, every . Using harmonic and bi-harmonic ac voltage bias, we then show that quasiparticles excitations can be transferred through the junction in a controlled way. By measuring the reduction of the excess shot noise, we are able to determine the number of electron-hole pairs surrounding the injected electrons and demonstrate that bi-harmonic voltage pulses realize an on-demand electron source with a very small admixture of electron-hole pairs.
Keywords
Cite
@article{arxiv.1612.08663,
title = {Characterization and control of charge transfer in a tunnel junction},
author = {Julien Gabelli and Karl Thibault and Gabriel Gasse and Christian Lupien and Bertrand Reulet},
journal= {arXiv preprint arXiv:1612.08663},
year = {2017}
}
Comments
8 pages, 8 figures