Penetration of a magnetic field into superconducting lead and lead-indium alloys
Identifieur interne : 000753 ( Main/Exploration ); précédent : 000752; suivant : 000754Penetration of a magnetic field into superconducting lead and lead-indium alloys
Auteurs : RBID : ISTEX:10909_1983_Article_BF00681271.pdfAbstract
The temperature dependence of the magnetic field penetration depth of superconducting lead and lead-indium alloys has been studied over the temperature range between about 2 K andTc. Data are analyzed in terms of the microscopic theory. The difficulties of a unique analysis of the penetration data are pointed out and a strategy for the best analysis is discussed. The penetration depth atT=0 K for pure lead is determined as 525 Å. This value, though higher than the previously accepted value for lead, is nevertheless consistent with the strong coupling character of lead.
DOI: 10.1007/BF00681271
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<author><name>A. K. Raychaudhuri</name>
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<front><div type="abstract" xml:lang="eng">The temperature dependence of the magnetic field penetration depth of superconducting lead and lead-indium alloys has been studied over the temperature range between about 2 K andTc. Data are analyzed in terms of the microscopic theory. The difficulties of a unique analysis of the penetration data are pointed out and a strategy for the best analysis is discussed. The penetration depth atT=0 K for pure lead is determined as 525 Å. This value, though higher than the previously accepted value for lead, is nevertheless consistent with the strong coupling character of lead.</div>
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<abstract lang="eng">The temperature dependence of the magnetic field penetration depth of superconducting lead and lead-indium alloys has been studied over the temperature range between about 2 K andTc. Data are analyzed in terms of the microscopic theory. The difficulties of a unique analysis of the penetration data are pointed out and a strategy for the best analysis is discussed. The penetration depth atT=0 K for pure lead is determined as 525 Å. This value, though higher than the previously accepted value for lead, is nevertheless consistent with the strong coupling character of lead.</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: 1983</partNumber>
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<partNumber>Number: 1-2</partNumber>
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<topic>Condensed Matter</topic>
<topic>Magnetism, Magnetic Materials</topic>
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<identifier type="issn">0022-2291</identifier>
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