DocumentCode :
1476971
Title :
Improvement of the microwave properties of Y-Ba-Cu-O films with artificial defects
Author :
Wördenweber, Roger ; Lahl, Peter ; Einfeld, Jan
Author_Institution :
Inst. fur Schicht- und Ionentechnik, Forschungszentrum Julich GmbH, Germany
Volume :
11
Issue :
1
fYear :
2001
fDate :
3/1/2001 12:00:00 AM
Firstpage :
2812
Lastpage :
2815
Abstract :
In this paper, the potential of defects for optimizing the microwave properties of YBa2Cu3O7 (YBCO) thin films is demonstrated. On one hand, microscopic Y2O3 precipitates, which can be created in YBCO thin films by modification of the deposition process, serve as ideal scattering centres for quasiparticles and, thus, lead to a considerable reduction of the microwave surface resistance Rs. The modification Rs(T) can be explained in terms of the two-fluid model. Data for the quasiparticle scattering rate can be obtained from the measurements. On the other hand, the impact of artificial defects, so called antidots, upon the microwave properties is analyzed. Rs measurements demonstrate that the ion beam etching creates a -20 nm broad damaged area at the edge of the antidots. First measurements of the power handling capability of YBCO thin film resonators indicate that the magnetic contribution to the nonlinear behavior can be reduced by antidots. The implementation of antidots, which have been proven to be an ideal and easy tool to improve active YBCO thin film devices, might be of use for microwave applications as well
Keywords :
barium compounds; crystal defects; high-frequency effects; high-temperature superconductors; ion beam effects; quantum dots; quasiparticles; sputter etching; superconducting resonators; superconducting thin films; surface conductivity; yttrium compounds; YBa2Cu3O7; antidots; artificial defects; damaged area; deposition process modification; ideal quasiparticle scattering centres; ion beam etching; microscopic Y2O3 precipitates; microwave properties; microwave surface resistance; power handling capability; quasiparticle scattering rate; resonators; thin films; two-fluid model; Area measurement; Electrical resistance measurement; Ion beams; Magnetic analysis; Microscopy; Scattering; Sputtering; Surface resistance; Transistors; Yttrium barium copper oxide;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/77.919648
Filename :
919648
Link To Document :
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