Metastable states of superconducting indium films. II
Identifieur interne : 000851 ( Main/Exploration ); précédent : 000850; suivant : 000852Metastable states of superconducting indium films. II
Auteurs : RBID : ISTEX:10909_1980_Article_BF00114895.pdfAbstract
Supercooling fields of In films condensed at 295 and 77 K have been studied. Each series of films defines a different bulk material, whose Ginzburg-Landau (GL) parameter can be obtained from the measured supercooling fields. These bulk metals satisfy the Gor'kov-Goodman relation between the GL parameter and resistivity. Furthermore, this relation is also satisfied by GL parameters of individual type II films condensed at 77 K, while other layers condensed at 295 K show deviations ascribed to nonlocal effects. The importance of a careful study of transport properties of the films for a correct interpretation of experiments is stressed.
DOI: 10.1007/BF00114895
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<author><name>J. Blot</name>
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<front><div type="abstract" xml:lang="eng">Supercooling fields of In films condensed at 295 and 77 K have been studied. Each series of films defines a different bulk material, whose Ginzburg-Landau (GL) parameter can be obtained from the measured supercooling fields. These bulk metals satisfy the Gor'kov-Goodman relation between the GL parameter and resistivity. Furthermore, this relation is also satisfied by GL parameters of individual type II films condensed at 77 K, while other layers condensed at 295 K show deviations ascribed to nonlocal effects. The importance of a careful study of transport properties of the films for a correct interpretation of experiments is stressed.</div>
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<abstract lang="eng">Supercooling fields of In films condensed at 295 and 77 K have been studied. Each series of films defines a different bulk material, whose Ginzburg-Landau (GL) parameter can be obtained from the measured supercooling fields. These bulk metals satisfy the Gor'kov-Goodman relation between the GL parameter and resistivity. Furthermore, this relation is also satisfied by GL parameters of individual type II films condensed at 77 K, while other layers condensed at 295 K show deviations ascribed to nonlocal effects. The importance of a careful study of transport properties of the films for a correct interpretation of experiments is stressed.</abstract>
<relatedItem type="series"><titleInfo type="abbreviated"><title>J Low Temp Phys</title>
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<titleInfo><title>Journal of Low Temperature Physics</title>
<partNumber>Year: 1980</partNumber>
<partNumber>Volume: 39</partNumber>
<partNumber>Number: 5-6</partNumber>
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<subject usage="primary"><topic>Physics</topic>
<topic>Characterization and Evaluation Materials</topic>
<topic>Condensed Matter</topic>
<topic>Magnetism, Magnetic Materials</topic>
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<identifier type="issn">0022-2291</identifier>
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