Kosterlitz-Thouless Transition in Bi${}_2$Sr${}_2$CaCu${}_2$O${}_8+\delta$ Thin Films
Vortex String, Tomoko Ota, Ichiro Tsukada, Ichiro Terasaki, and, Kunimitsu Uchinokura

TL;DR
This study investigates the Kosterlitz-Thouless transition in Bi${}_2$Sr${}_2$CaCu${}_2$O${}_{8+eta}$ thin films, linking vortex behavior to superconducting properties and interlayer interactions.
Contribution
The paper formulates KT RG equations considering vortex excitations and demonstrates their applicability to experimental data on Bi${}_2$Sr${}_2$CaCu${}_2$O${}_{8+eta}$ films.
Findings
KT transition occurs in vortex-string region with ln r interaction
Successful explanation of KT scaling in I-V characteristics
Interlayer interaction significantly influences superconductivity
Abstract
Current-voltage () characteristics and the increase of superconducting transition temperature as a function of the number of half-unit-cell layers are studied on BiSrCaCuO thin films grown by molecular beam epitaxy. These observations are interpreted in terms of Kosterlitz-Thouless (KT) transition associated with vortex string threading the film. Considering the change in the types of the lowest free-energy excitations as a function of the size of vortex pair, we have formulated KT renormalization-group (RG) equations. Using experimental data obtained with BiSrCaCuO thin films, we have solved the RG equations. It is shown that the KT transition occurs in the vortex-string region with interstring interaction only. Our calculation successfully explains KT scaling in characteristics and the…
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Taxonomy
TopicsPhysics of Superconductivity and Magnetism · Magnetic Properties and Applications · Magnetic properties of thin films
