Title :
Towards a 1 V Josephson Arbitrary Waveform Synthesizer
Author :
Kieler, O.F. ; Behr, R. ; Wendisch, R. ; Bauer, Stefan ; Palafox, L. ; Kohlmann, J.
Author_Institution :
Phys.-Tech. Bundesanstalt, Braunschweig, Germany
Abstract :
The establishment at PTB of an AC Josephson voltage standard (Josephson Arbitrary Waveform Synthesizer- JAWS) based on pulse-driven Josephson arrays is focused on achieving an output voltage of at least 1 Vrms which is required for many metrology applications. In this paper, we approached this goal by increasing the number of active junctions in two ways. Firstly, we fabricated arrays containing triple-stacked SNS-type Josephson junctions with NbxSi1-x as barrier material. We obtained current operation margins of about 0.2 mA with arrays of up to 9000 Josephson junctions at an rms voltage of 355 mV. Secondly, we used a new 8-channel ternary pulse pattern generator (PPG) to bias up to 8 arrays connected in series. An output voltage of VRMS = 1006 mV(VPP = 2.845 V) was achieved by using 8 arrays (arranged on 4 separate chips) with 63000 junctions in total. Higher harmonics are suppressed by at least -116 dBc. The fabrication process and the experimental setup will be described, as well as experimental results that are leading towards our 1 V goal.
Keywords :
harmonics suppression; measurement standards; pulse generators; superconductor-normal-superconductor devices; voltage measurement; waveform generators; AC Josephson voltage standard; Josephson arbitrary waveform synthesizer; barrier material; current 0.2 mA; harmonics suppression; pulse driven Josephson array fabrication; ternary pulse pattern generator; triple stacked SNS-type Josephson junction; voltage 1 V; voltage 1006 mV; voltage 355 mV; Coplanar waveguides; Fabrication; Harmonic analysis; Josephson junctions; Junctions; Standards; Synthesizers; AC Josephson voltage standard; Josephson arbitrary waveform synthesizer; SNS junction; sigma-delta modulation;
Journal_Title :
Applied Superconductivity, IEEE Transactions on
DOI :
10.1109/TASC.2014.2366916