Millimeter Wave Study of Hybrid Superconducting Heterostructures with Magnetic Active Interlayer

We fabricated Nb/Au/(Ca 1-x Sr x )CuO 2 /YBa 2 Cu 3 O 7 superconducting heterostructures with I C RN product 100divide300 muV at T=4.2 K. Critical current density was 10 A/cm 2 through 50 nm thick Ca 1-x Sr x CuO 2 layer, and increased for thinner layers. Critical currents of the heterostructures ha...

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Hauptverfasser: Kislinskii, Y.V., Constantinian, K.Y., Komissinskij, P.V., Ovysuannikov, G.A.
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creator Kislinskii, Y.V.
Constantinian, K.Y.
Komissinskij, P.V.
Ovysuannikov, G.A.
description We fabricated Nb/Au/(Ca 1-x Sr x )CuO 2 /YBa 2 Cu 3 O 7 superconducting heterostructures with I C RN product 100divide300 muV at T=4.2 K. Critical current density was 10 A/cm 2 through 50 nm thick Ca 1-x Sr x CuO 2 layer, and increased for thinner layers. Critical currents of the heterostructures had much smaller periods in l c (H) dependencies compare to Josephson junctions without anti ferromagnetic layer. Half- integer Shapiro steps and detector responses were observed for the most of heterostructures. Current phase relations of the heterostructures deviated from sinusoidal with 10divide40% portion of the second harmonic.
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Critical current density was 10 A/cm 2 through 50 nm thick Ca 1-x Sr x CuO 2 layer, and increased for thinner layers. Critical currents of the heterostructures had much smaller periods in l c (H) dependencies compare to Josephson junctions without anti ferromagnetic layer. Half- integer Shapiro steps and detector responses were observed for the most of heterostructures. Current phase relations of the heterostructures deviated from sinusoidal with 10divide40% portion of the second harmonic.</abstract><pub>IEEE</pub><doi>10.1109/MSMW.2007.4294679</doi><tpages>3</tpages></addata></record>
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subjects Critical current
Gold
Josephson junctions
Magnetic field measurement
Niobium
Superconducting devices
Superconducting epitaxial layers
Superconducting integrated circuits
Superconducting magnets
Superconducting microwave devices
title Millimeter Wave Study of Hybrid Superconducting Heterostructures with Magnetic Active Interlayer
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