Title :
HTS rf SQUIDs with fully integrated planar tank circuits
Author :
Zhang, Y. ; Soltner, H. ; Wolters, N. ; Zander, W. ; Schubert, J. ; Banzet, M. ; Braginski, A.I.
Author_Institution :
Inst. fur Schicht- und Ionentech., Forschungszentrum Julich GmbH, Germany
fDate :
6/1/1997 12:00:00 AM
Abstract :
For the optimization of the operation of rf-SQUIDs, a high pumping frequency f/sub 0/ and a high quality factor Q of the tank circuit are desirable. For this purpose we used a washer rf SQUID or a current-injection loop SQUID integrated with a modified planar hairpin resonator around the SQUID. On LaAlO/sub 3/ substrates, we measured f/sub 0/ at resonance in the range of about 550 MHz to 1.1 GHz and unloaded quality factors Q/sub 0/ from 4000 to about 6000 using several layouts with different diameters. We found that the coupling coefficient k between the SQUID and the resonator can be estimated from the geometrical parameters of the layout. The requirement k/sup 2/Q>1 can easily be met with our design. Our layouts are very flexible, as they make possible the implementation of various single and multilayer antennas. Using a single layer flux transformer, 13 mm in outer diameter, together with a SQUID in the flip chip technique, we obtained a white flux noise of 50 fT//spl radic/Hz for a 150 pH SQUID.
Keywords :
Q-factor; SQUID magnetometers; barium compounds; flip-chip devices; high-temperature superconductors; superconducting device noise; superconducting device testing; superconducting integrated circuits; superconducting resonators; superconducting transformers; white noise; yttrium compounds; 550 MHz to 1.1 GHz; HTS rf SQUIDs; LaAlO/sub 3/; LaAlO/sub 3/ substrates; YBa/sub 2/Cu/sub 3/O/sub 7/; YBaCuO films; coupling coefficient; current-injection loop SQUID; flexible layout; flip chip technique; fully integrated planar tank circuits; geometrical parameters; high sensitivity magnetometer; multilayer antennas; planar hairpin resonator; pumping frequency; rf-SQUID operation optimization; single antennas; single layer flux transformer; unloaded quality factors; washer rf SQUID; white flux noise; Flip chip; Frequency; High temperature superconductors; Integrated circuit measurements; Nonhomogeneous media; Q factor; Q measurement; Resonance; SQUIDs; White noise;
Journal_Title :
Applied Superconductivity, IEEE Transactions on