Detection of Fine Iron Particles in High Speed Scrolled Wire by High-T_c SQUID (Special Issue on Basic Properties and Applications of Superconductive Electron Devices)
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概要
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High-T_c SQUID was applied to the detection of magnetized fine particle moving at high speed. Two types of SQUIDs were used. One was a large washer type and the other was a flux transformer type. Their Josephson junctions were step edge type. The iron particle was attached on a nylon wire and scanned under the SQUID. High-T_c SQUID detected an iron particle of 50μm diameter running at 800 m/min. It was shown that the magnetic field measured by the SQUID was proportional to the volumer of the particle and is inversely proportional to the distance between the SQUID and the particle. This technique using high-T_c SQUID is hopeful not only to wire production line but also for the processing of food and medicine, etc.
- 社団法人電子情報通信学会の論文
- 1997-10-25
著者
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Toyoda Haruhisa
Itami Research Laboratories Sumitomo Electric Industries Ltd.
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Nagaishi Tatsuoki
Itami Research Laboratories, Sumitomo Electric Industries, Ltd.
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Itozaki Hideo
Itami Research Laboratories, Sumitomo Electric Industries, Ltd.
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Itozaki Hideo
Itami Research Laboratories Sumitomo Electric Ind. Ltd.
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Itozaki Hideo
Itami Research Laboratories Sumitomo Electric Industries Ltd.
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KUGAI Hirokazu
Itami Research Laboratories, Sumitomo Electric Industries, Ltd.
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Nagaishi Tatsuoki
Itami Research Laboratories Sumitomo Electric Industries Ltd.
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Kugai Hirokazu
Itami Research Laboratories Sumitomo Electric Industries Ltd.
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- Detection of Fine Iron Particles in High Speed Scrolled Wire by High-T_c SQUID (Special Issue on Basic Properties and Applications of Superconductive Electron Devices)
- Crystallinity and Morphology of Superconducting Thin Films Prepared by Sputtering
- Ion Channeling Study of Epitaxially Grown HoBa_2Cu_3O_x Thin Films on MgO(001)
- Growth of Buffer Layers on Si Substrate for High-T_c Superconducting Thin Films
- Crystal Orientation of YBa_2Cu_3O_ Thin Films Prepared by RF Sputtering
- Heteroepitaxial Growth of Y-Ba-Cu-O/Bi-Sr-Cu-O/Y-Ba-Cu-O
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