We present an experimental study of the magnetic flux dependence of the critical current of a balanced superconducting quantum interference device (SQUID) with three Josephson junctions in parallel. Unlike for ordinary direct current (dc) SQUIDs, the suppression of the critical current does not depend on the exact parameters of the Josephson junctions. The suppression is essentially limited only by the inductances of the SQUID loops. We demonstrate a critical current suppression ratio of higher than 300 in a balanced SQUID with a maximum critical current 30nA .Peer reviewe
The Superconducting Quantum Interference Device (SQUID) is an extremely sensitive flux-to-voltage co...
The reduced dynamical model of a two-junction quantum interference device is generalized to the case...
In ballistic superconductor–normal metal–superconductor Josephson junctions, such as those made from...
We present an experimental study of the magnetic flux dependence of the critical current of a balanc...
We have fabricated and studied a promising kind of direct current superconducting quantum interferen...
AbstractIn a small Josephson junction, the critical current is often found experimentally to be smal...
The Josephson diode (JD) is a non-reciprocal circuit element that supports a larger critical current...
© 2016 IOP Publishing Ltd.We consider voltage and current response formation in DC superconducting q...
Superconducting quantum interference device arrays have been extensively studied for their high magn...
This Letter presents fabrication and characterization of an optimized superconducting quantum interf...
A superconductor-normal metal-superconductor mesoscopic Josephson junction has been realized in whic...
Cataloged from PDF version of article.he suppression of the critical current in YBCO Josephson junc...
We experimentally studied two important parameters of helium-cooled superconducting quantum interfer...
AbstractThe author numerically demonstrates several features of blocking oscillation in resistive su...
We present measurements of an amplifier based on a dc superconducting quantum interference device (S...
The Superconducting Quantum Interference Device (SQUID) is an extremely sensitive flux-to-voltage co...
The reduced dynamical model of a two-junction quantum interference device is generalized to the case...
In ballistic superconductor–normal metal–superconductor Josephson junctions, such as those made from...
We present an experimental study of the magnetic flux dependence of the critical current of a balanc...
We have fabricated and studied a promising kind of direct current superconducting quantum interferen...
AbstractIn a small Josephson junction, the critical current is often found experimentally to be smal...
The Josephson diode (JD) is a non-reciprocal circuit element that supports a larger critical current...
© 2016 IOP Publishing Ltd.We consider voltage and current response formation in DC superconducting q...
Superconducting quantum interference device arrays have been extensively studied for their high magn...
This Letter presents fabrication and characterization of an optimized superconducting quantum interf...
A superconductor-normal metal-superconductor mesoscopic Josephson junction has been realized in whic...
Cataloged from PDF version of article.he suppression of the critical current in YBCO Josephson junc...
We experimentally studied two important parameters of helium-cooled superconducting quantum interfer...
AbstractThe author numerically demonstrates several features of blocking oscillation in resistive su...
We present measurements of an amplifier based on a dc superconducting quantum interference device (S...
The Superconducting Quantum Interference Device (SQUID) is an extremely sensitive flux-to-voltage co...
The reduced dynamical model of a two-junction quantum interference device is generalized to the case...
In ballistic superconductor–normal metal–superconductor Josephson junctions, such as those made from...