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Noise and dc characteristics of thin‐film Bi‐Sr‐Ca‐Cu‐oxide dc SQUIDs

 

作者: D. W. Face,   J. M. Graybeal,   T. P. Orlando,   D. A. Rudman,  

 

期刊: Applied Physics Letters  (AIP Available online 1990)
卷期: Volume 56, issue 15  

页码: 1493-1495

 

ISSN:0003-6951

 

年代: 1990

 

DOI:10.1063/1.103157

 

出版商: AIP

 

数据来源: AIP

 

摘要:

Highly oriented Bi‐Sr‐Ca‐Cu‐oxide thin films withTc≥100 K and large (10–20 &mgr;m) grains were used to produce thin‐film dc superconducting quantum interference devices (SQUIDs). The best SQUID, which operated up to 75 K, had an inside loop diameter of ∼18 &mgr;m and an estimated loop inductance of 30 pH. The device was patterned by standard photolithography and had weak links that were likely due to existing grain boundaries around the loop. The effective loop area, calculated from the period of the SQUID modulation, is roughly consistent with the geometrical area of the SQUID loop. Significant hysteresis was observed in the flux‐voltage characteristic which depended on the amplitude of the magnetic field sweep. The 1/fnoise levels measured at 100 Hz in this device gave a flux noiseS&fgr;of 1.0×10−8&Fgr;20/Hz at 4.8 K and 2.3×10−7&Fgr;20/Hz at 60 K. The detailed noise measurements which we report for this SQUID are the first for any Bi‐Sr‐Ca‐Cu‐oxide based SQUID.

 

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