A well-characterised sample of silicon tunable-barrier electron pump has been operated at a frequency of 2 GHz using a custom drive waveform, generating a pump current of 320 pA. Precision measurements of the current were made as a function of pump control parameters, using a blind protocol, over a 7-week campaign. The combined standard uncertainty for each 10 hour measurement was 0.1 parts per million. The pump current exhibits a plateau along the exit gate voltage flat to approximately 0.1 parts per million, but offset from ef by 0.2 parts per million. This offset may be a sign of errors in the current traceability chain, indicating a limit to the accuracy of small current scaling using existing methods based on cryogenic current comparators.
@article{arxiv.2301.04499,
title = {Precision measurement of an electron pump at 2 GHz},
author = {Stephen Giblin and Gento Yamahata and Akira Fujiwara and Masaya Kataoka},
journal= {arXiv preprint arXiv:2301.04499},
year = {2023}
}
Comments
14 pages, 13 figures, including supplementary information in one file