Strong coupling superconductivity in a quasiperiodic host-guest structure

We examine the low-temperature states supported by the quasiperiodic host-guest structure of elemental bismuth at high pressure, Bi-III. Our electronic transport and magnetization experiments establish Bi-III as a rare example of type II superconductivity in an element, with a record upper critical...

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Veröffentlicht in:Science advances 2018-04, Vol.4 (4), p.eaao4793-eaao4793
Hauptverfasser: Brown, Philip, Semeniuk, Konstantin, Wang, Diandian, Monserrat, Bartomeu, Pickard, Chris J, Grosche, F Malte
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Sprache:eng
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Zusammenfassung:We examine the low-temperature states supported by the quasiperiodic host-guest structure of elemental bismuth at high pressure, Bi-III. Our electronic transport and magnetization experiments establish Bi-III as a rare example of type II superconductivity in an element, with a record upper critical field of ~ 2.5 T, unusually strong electron-phonon coupling, and an anomalously large, linear temperature dependence of the electrical resistivity in the normal state. These properties may be attributed to the peculiar phonon spectrum of incommensurate host-guest structures, which exhibit additional quasi-acoustic sliding modes, suggesting a pathway toward strong coupling superconductivity with the potential for enhanced transition temperatures and high critical fields.
ISSN:2375-2548
2375-2548
DOI:10.1126/sciadv.aao4793