Magnetic imaging of moat-guarded superconducting electronic circuits
Appl. Phys. Lett. 67, 1769 (1995); doi:10.1063/1.114377
Issue Date: 18 September 1995
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Superconducting electronic circuits surrounded by various configurations of holes in the superconducting ground plane have been imaged using a high resolution scanning superconducting quantum interference device (SQUID) microscope. These data demonstrate that in the weak field limit continuous moats trap flux more effectively to protect the circuits than small holes in the same configuration. ©1995 American Institute of Physics.
| History: | Received 29 June 1995; accepted 24 July 1995 |
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http://link.aip.org/link/?APPLAB/67/1769/1 |
KEYWORDS and PACS
DEGRADATION,
ELECTRONIC CIRCUITS,
IMAGES,
MAGNETIC FLUX,
SHIELDING,
SUPERCONDUCTING DEVICES,
TRAPPING
- 74.60.Ge
Superconductivity Type-II superconductivity Flux pinning, flux creep, and flux-line lattice dynamics - 85.25.Dq
Electrical and magnetic devices Superconducting devices; superconducting magnets Superconducting quantum interference devices (SQUIDs) (including magnetometers, electromagnetic radiation sources and detectors, and computer logic and memory devices) - YEAR: 1995
RELATED DATABASES
PUBLICATION DATA
0003-6951 (print)
1077-3118 (online)
REFERENCES (9)
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