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Improved superconducting quantum interference devices by resistance asymmetry

Academic Article
Publication Date:
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.
Iris type:
01.01 Articolo in rivista
Keywords:
Superconduttività; Giunzioni Josephson; SQUID
List of contributors:
Sarnelli, Ettore; MANGO FURNARI, Mario; Calidonna, CLAUDIA ROBERTA; Testa, Gianluca; Pagano, Sergio
Authors of the University:
CALIDONNA CLAUDIA ROBERTA
SARNELLI ETTORE
Handle:
https://iris.cnr.it/handle/20.500.14243/454518
Published in:
APPLIED PHYSICS LETTERS
Journal
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