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Article: Electromagnetic and thermomagnetic properties of high-Tc superconductor in its mixed state: The single-vortex-motion model

TitleElectromagnetic and thermomagnetic properties of high-Tc superconductor in its mixed state: The single-vortex-motion model
Authors
Issue Date1996
PublisherInstitute of Physics Publishing. The Journal's web site is located at http://www.iop.org/journals/sust
Citation
Superconductor Science And Technology, 1996, v. 9 n. 5, p. 333-346 How to Cite?
AbstractIn the first part of this article we review the theory of flux motion in conventional superconductors. We then describe the recent developments in the theory of vortex motion in the mixed state of high-Tc superconductors. In particular, a unified theory of vortex motion in the presence of thermal fluctuations and pinning centres is introduced in detail. Applications of this theory are presented to account for such experimentally observed phenomena as the scaling behaviour, sign reversal of the Hall resistivity and properties of the complex resistivity. Moreover, theoretical investigations on the thermomagnetic effects such as the Nernst and Seebeck effects, and the Ettinghausen effect are also addressed. Such an analysis using the single-vortex-motion model could provide an understanding of many physical properties of high-Tc superconductors.
Persistent Identifierhttp://hdl.handle.net/10722/80523
ISSN
2015 Impact Factor: 2.717
2015 SCImago Journal Rankings: 0.824
ISI Accession Number ID
References

 

DC FieldValueLanguage
dc.contributor.authorWang, ZDen_HK
dc.contributor.authorWang, Qen_HK
dc.contributor.authorFung, PCWen_HK
dc.date.accessioned2010-09-06T08:07:23Z-
dc.date.available2010-09-06T08:07:23Z-
dc.date.issued1996en_HK
dc.identifier.citationSuperconductor Science And Technology, 1996, v. 9 n. 5, p. 333-346en_HK
dc.identifier.issn0953-2048en_HK
dc.identifier.urihttp://hdl.handle.net/10722/80523-
dc.description.abstractIn the first part of this article we review the theory of flux motion in conventional superconductors. We then describe the recent developments in the theory of vortex motion in the mixed state of high-Tc superconductors. In particular, a unified theory of vortex motion in the presence of thermal fluctuations and pinning centres is introduced in detail. Applications of this theory are presented to account for such experimentally observed phenomena as the scaling behaviour, sign reversal of the Hall resistivity and properties of the complex resistivity. Moreover, theoretical investigations on the thermomagnetic effects such as the Nernst and Seebeck effects, and the Ettinghausen effect are also addressed. Such an analysis using the single-vortex-motion model could provide an understanding of many physical properties of high-Tc superconductors.en_HK
dc.languageengen_HK
dc.publisherInstitute of Physics Publishing. The Journal's web site is located at http://www.iop.org/journals/susten_HK
dc.relation.ispartofSuperconductor Science and Technologyen_HK
dc.titleElectromagnetic and thermomagnetic properties of high-Tc superconductor in its mixed state: The single-vortex-motion modelen_HK
dc.typeArticleen_HK
dc.identifier.openurlhttp://library.hku.hk:4550/resserv?sid=HKU:IR&issn=0953-2048&volume=9&issue=5&spage=333&epage=346&date=1996&atitle=Electromagnetic+and+thermomagnetic+properties+of+high-Tc+superconductor+in+its+mixed+state:+the+single-vortex-motion+modelen_HK
dc.identifier.emailWang, ZD: zwang@hkucc.hku.hken_HK
dc.identifier.authorityWang, ZD=rp00802en_HK
dc.description.naturelink_to_subscribed_fulltext-
dc.identifier.doi10.1088/0953-2048/9/5/001en_HK
dc.identifier.scopuseid_2-s2.0-0030134005en_HK
dc.identifier.hkuros10774en_HK
dc.relation.referenceshttp://www.scopus.com/mlt/select.url?eid=2-s2.0-0030134005&selection=ref&src=s&origin=recordpageen_HK
dc.identifier.volume9en_HK
dc.identifier.issue5en_HK
dc.identifier.spage333en_HK
dc.identifier.epage346en_HK
dc.identifier.isiWOS:A1996UL80700001-
dc.publisher.placeUnited Kingdomen_HK
dc.identifier.scopusauthoridWang, ZD=14828459100en_HK
dc.identifier.scopusauthoridWang, Q=36479467200en_HK
dc.identifier.scopusauthoridFung, PCW=7101613315en_HK

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