A cross-type SNS junction array for a quantum-based arbitrary waveform synthesizer

Central to quantum-based arbitrary waveform synthesizers is a Josephson junction array driven by short pulses. Its linear dimensions should be small compared to the line wavelength in order to generate an ac voltage with quantum accuracy. Therefore, we use coplanar strip transmission lines to integr...

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Veröffentlicht in:IEEE transactions on applied superconductivity 2005-06, Vol.15 (2), p.829-832
Hauptverfasser: Schubert, M., May, T., Wende, G., Meyer, H.-G.
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creator Schubert, M.
May, T.
Wende, G.
Meyer, H.-G.
description Central to quantum-based arbitrary waveform synthesizers is a Josephson junction array driven by short pulses. Its linear dimensions should be small compared to the line wavelength in order to generate an ac voltage with quantum accuracy. Therefore, we use coplanar strip transmission lines to integrate a large number of cross-type SNS Josephson junctions into multiple parallel arrays. First measurements show that a circuit with 1,760 junctions exhibits Shapiro steps over a large frequency range. By using pulse driving the chip generates unipolar voltages up to 6.4 mV at a clock frequency of 3.5 GHz, the maximum frequency of the available pulse pattern generator.
doi_str_mv 10.1109/TASC.2005.850072
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source IEEE Electronic Library (IEL)
subjects AC generators
Applied sciences
Arbitrary waveform synthesizer
Arrays
Circuit properties
coplanar strips
Coplanar transmission lines
Distributed parameter circuits
Electric potential
Electric, optical and optoelectronic circuits
Electronic circuits
Electronics
Exact sciences and technology
Frequency measurement
Frequency ranges
Josephson junctions
Oscillators, resonators, synthetizers
Pulse generation
Semiconductor device measurement
Signal convertors
SNS Josephson junctions
Superconductivity
Synthesizers
Transmission line measurements
Voltage
voltage standard
Waveforms
title A cross-type SNS junction array for a quantum-based arbitrary waveform synthesizer
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