Control of the effective value of the critical current of the RF SQUID by the high-frequency electromagnetic field

Author:

Shnyrkov V. I.12,Lyakhno V. Yu.23,Kalenyuk О. A.12,Mindich D. G.1,Leha O. O.3,Shapovalov A. P.12ORCID

Affiliation:

1. Kyiv Academic University 1 , Kyiv 03142, Ukraine

2. G. V. Kurdyumov Institute for Metal Physics of the National Academy of Sciences of Ukraine 2 , Kyiv 03142, Ukraine

3. B. Verkin Institute for Low Temperature Physics and Engineering of the National Academy of Sciences of Ukraine 3 , Kharkiv 61103, Ukraine

Abstract

An analysis of the influence of the high-frequency electromagnetic field on the amplitude-frequency and signal characteristics of RF SQUID and experimental verification are carried out. At low parameter βL, the RF SQUID behavior is well described analytically by the theoretical model. In experiment, basic operation scheme is used in which the interferometer is inductively connected to a resonant circuit driven by RF current at a frequency close to the resonance frequency of the circuit. It is shown that parameter βL, which distinguishes between hysteretic and nonhysteretic regimes, can be effectively adjusted to a desired value by applying the high-frequency field of a certain amplitude and frequency much higher than circuit resonance frequency. A significant increase in the conversion factor and sensitivity of the RF SQUID during this adjustment is discussed.

Publisher

AIP Publishing

Reference14 articles.

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2. Rf SQUID in the nonhysteretic regime withk 2 Ql>1

3. An RF SQUID readout for a flux qubit-based microwave single photon counter

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