Direct current superconducting quantum interference devices made by Josephson junctions with asymmetric shunt resistances have been numerically investigated in the low temperature regime. When combined with a damping resistance, the asymmetry leads to a flux to voltage transfer coefficient several times larger than the one typical of symmetric devices, together with a lower magnetic flux noise. These results show that this type of asymmetric device may replace the standard ones in a large number of magnetometric applications, improving the sensitivity performance. The large transfer coefficient may also simplify the readout electronics allowing a direct coupling of asymmetric devices to an external preamplifier, without the need of an impedance matching flux transformer.

Improved superconducting quantum interference devices by resistance asymmetry

Pagano S;Sarnelli E;Calidonna C R;Mango Furnari M
2001

Abstract

Direct current superconducting quantum interference devices made by Josephson junctions with asymmetric shunt resistances have been numerically investigated in the low temperature regime. When combined with a damping resistance, the asymmetry leads to a flux to voltage transfer coefficient several times larger than the one typical of symmetric devices, together with a lower magnetic flux noise. These results show that this type of asymmetric device may replace the standard ones in a large number of magnetometric applications, improving the sensitivity performance. The large transfer coefficient may also simplify the readout electronics allowing a direct coupling of asymmetric devices to an external preamplifier, without the need of an impedance matching flux transformer.
2001
Istituto di Scienze Applicate e Sistemi Intelligenti "Eduardo Caianiello" - ISASI
79
2943
2945
3
Sì, ma tipo non specificato
Superconduttività
Giunzioni Josephson
SQUID
Tale studio si inserisce nell'ambito delle ricerche sugli SQUID, sensori di campo magnetico estremamente sensibili. Prima di tale lavoro qualunque asimmetria nel loop superconduttivo era considerata dannosa per le proprietà dello SQUID. Con tale lavoro si dimostra invece che le prestazioni non solo non peggiorano ma possono anche essere di gran lunga superiori ai dispositivi convenzionali.
4
info:eu-repo/semantics/article
262
Testa G; Pagano S; Sarnelli E; Calidonna C R;Mango Furnari M
01 Contributo su Rivista::01.01 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/454518
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