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Superconducting quantum electronics based on stochastic resonance systems

The principles are developed for amplification of weak informational signals in superconductive quantum interferometers (SQUIDs) based on the effect of stochastic resonance (SR) at arbitrary low temperature and in arrays of SR-SQUIDs. Numerically calculated gain is 30 dB under signal-to-noise ratio...

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Main Authors: Turutanov, O.G., Shnyrkov, V.I., Melnik, S.I., Slipchenko, N.I., Larkin, S.J.
Format: Conference Proceeding
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creator Turutanov, O.G.
Shnyrkov, V.I.
Melnik, S.I.
Slipchenko, N.I.
Larkin, S.J.
description The principles are developed for amplification of weak informational signals in superconductive quantum interferometers (SQUIDs) based on the effect of stochastic resonance (SR) at arbitrary low temperature and in arrays of SR-SQUIDs. Numerically calculated gain is 30 dB under signal-to-noise ratio approaching to (10...20) dB. New RF field-controlled SR-antennas for SQUIDs are suggested.
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source IEEE Electronic Library (IEL) Conference Proceedings
subjects Frequency locked loops
Stochastic resonance
title Superconducting quantum electronics based on stochastic resonance systems
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