DocumentCode :
960477
Title :
High-speed operation of HTS SQUID-array interface circuits with a cryocooler
Author :
Horibe, Masahiro ; Tarutani, Yoshinobu ; Tanabe, Keiichi
Author_Institution :
Fujitsu Labs. Ltd., Kanagawa, Japan
Volume :
14
Issue :
1
fYear :
2004
fDate :
3/1/2004 12:00:00 AM
Firstpage :
63
Lastpage :
68
Abstract :
The authors evaluated the operation of high-temperature superconducting quantum interference device (SQUID)-array interface circuits (IFCs) with normal-metal control lines. Transimpedance amplification was obtained at an operating speed of 1 Gb/s using a cryocooler. The effect of the number of SQUIDs connected in series and the number of arrays connected in parallel on the level of output from the SQUID-array IFCs was examined by Josephson circuit simulation, and then the effect of statistical spreads of junction characteristics was evaluated by Monte Carlo simulation. It was found that the configuration of two parallel SQUID arrays with 64 SQUIDs gives the highest output when the junction characteristics in the arrays have a certain spread. The authors fabricated the IFCs by using the conventional interface-engineered junction process. The process reproducibility was 100 μA ±25% for junction Ic, and 3.02 pH ±5% and 2.57 pH ±17% for the sheet inductance of the upper and lower electrodes, respectively. The transimpedance at low frequencies reached 20 and 4 V/A for input levels of 20 and 100 μA, respectively. Output voltages as high as 4.4 mV at 4.2 K and 2.3 mV at 40 K were obtained. Furthermore, an output voltage of 600 μV was obtained for a 1-Gb/s 215-1 pseudo-random binary signal input at 40 K.
Keywords :
Josephson effect; Monte Carlo methods; SQUIDs; circuit simulation; cryogenics; high-temperature superconductors; integrated circuits; 100 muA; 2.3 mV; 20 muA; 4.2 K; 4.4 mV; 40 K; 600 muV; HTS SQUID-array interface circuits; Josephson circuit simulation; Monte Carlo simulation; SQUID-array IFCs; SQUIDs; cryocooler; high-speed operation; high-temperature superconducting quantum interference device; interface-engineered junction; interface-engineered junctions; normal-metal control lines; parallel SQUID arrays; parallel arrays; pseudo-random binary signal; transimpedance amplification; Circuit simulation; Electrodes; Frequency; High temperature superconductors; Inductance; Interference; Reproducibility of results; SQUIDs; Superconducting devices; Voltage;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2004.824338
Filename :
1288215
Link To Document :
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