DocumentCode
834530
Title
Challenges of Josephson junction arrays for ac voltage generation by microwave pulse power modulation
Author
Katkov, Alexander S. ; Klushin, Alexander M. ; Telitchenko, Gennady P. ; Behr, Ralf ; Niemeyer, Juergen
Author_Institution
Mendeleyev Inst. for Metrol., St. Petersburg, Russia
Volume
15
Issue
2
fYear
2005
fDate
6/1/2005 12:00:00 AM
Firstpage
352
Lastpage
355
Abstract
Voltage pulses with a determined amplitude and width might be the basis for high-precision ac voltage measurements in the future. The pulse width modulation technique makes possible the generation of arbitrary waveforms. In this paper, arrays of SINIS Josephson junctions were investigated which produce a 1 V voltage step under irradiation at a frequency of the order of 70 GHz. This step has an amplitude of 1 mA whereof a region of 0.3 mA overlaps with the critical current. This allows the generation of a 1 V voltage pulse by switching the microwave power at constant dc bias current. The results of this investigation will be presented and also the array parameters which are required for obtaining a relative uncertainty of 0.1 ppm in ac voltage measurements.
Keywords
Josephson effect; critical current density (superconductivity); pulse width modulation; superconducting arrays; superconducting microwave devices; voltage measurement; 0.3 mA; 1 V; 1 mA; 70 GHz; Josephson effect; Josephson junction arrays; SINIS Josephson junctions; ac voltage generation; arbitrary waveforms; critical current; dc bias current; high-precision ac voltage measurements; microwave power; microwave pulse power modulation; pulse modulation; pulse width modulation technique; voltage pulses; AC generators; High power microwave generation; Josephson junctions; Microwave antenna arrays; Microwave generation; Power generation; Pulse generation; Pulse modulation; Space vector pulse width modulation; Voltage; Ac voltage; Josephson array; Josephson effect; pulse modulation;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/TASC.2005.849833
Filename
1439648
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