Precision measurement of single-electron current with quantized Hall array resistance and Josephson voltage

Authors
Bae, Myung-HoChae, Dong-HunKim, Mun-SeogKim, Bum-KyuPark, Suk-InSong, JindongOe, TakehikoKaneko, Nobu-HisaKim, NamKim, Wan-Seop
Issue Date
2020-12
Publisher
IOP PUBLISHING LTD
Citation
METROLOGIA, v.57, no.6
Abstract
A single electron pump was incorporated with a quantum Hall resistance and a Josephson voltage for the current evaluation in the framework of Ohm's law. The pump current of about 60 pA level was amplified by a stable amplifier with a gain of 10(3) to induce a Hall voltage of about 60 mV level across a 1 M omega Hall resistance array, which was compared with the Josephson voltage. The gain of the current amplifier was calibrated with a cryogenic current comparator bridge. For two different drive frequencies and repeated thermal cycles, the comparisons demonstrated that the pump current averaged over the first plateau was equal to ef within the combined uncertainty level of 0.3 x 10(-6) (k = 1).
Keywords
QUANTUM; METROLOGY; NOISE; QUANTUM; METROLOGY; NOISE; quantum current source; single electron pump; precision measurement of current
ISSN
0026-1394
URI
https://pubs.kist.re.kr/handle/201004/117790
DOI
10.1088/1681-7575/abb6cf
Appears in Collections:
KIST Article > 2020
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