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Generation of Constant Voltage Steps by a Josephson Array Driven by Optoelectronically Generated Pulses at BNM-LNE

Here we report the first results obtained at BNM-LNE on a Josephson array biased by optoelectronically generated pulse trains over repetition frequencies, f, from 0.5 to 1.75 MHz. For all the frequencies, we have observed quantized voltage steps as a function of the current pulse amplitude I p . We...

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Main Authors: Monnoye, O., Djordjevic, S., Cancela, P., Piquemal, F.
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Djordjevic, S.
Cancela, P.
Piquemal, F.
description Here we report the first results obtained at BNM-LNE on a Josephson array biased by optoelectronically generated pulse trains over repetition frequencies, f, from 0.5 to 1.75 MHz. For all the frequencies, we have observed quantized voltage steps as a function of the current pulse amplitude I p . We demonstrate the independence of the step widths with f in close agreement with the numerical simulations and we confirm the flatness of a single voltage step
doi_str_mv 10.1109/CPEM.2004.305467
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subjects Boolean functions
Data structures
Frequency
Josephson junctions
Optical pulse generation
Optical pulses
Pulse generation
Shape control
Space vector pulse width modulation
Voltage control
title Generation of Constant Voltage Steps by a Josephson Array Driven by Optoelectronically Generated Pulses at BNM-LNE
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