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Superconductivity in Novel BiS<sub>2</sub>-Based Layered Superconductor LaO<sub>1-<i>x</i></sub>F<sub><i>x</i></sub>BiS<sub>2</sub>

Journal of the Physical Society of Japan · 2012 · Vol. 81(11) · pp. 114725–114725
Yoshikazu MizuguchiSatoshi DemuraKeita DeguchiYoshihiko TakanoHiroshi FujihisaYoshito GotohHiroki IzawaOsuke Miura

Abstract

Layered superconductors have provided some interesting fields in condensed matter physics owing to the low dimensionality of their electronic states. For example, the high-Tc (high transition temperature) cuprates and the Fe-based superconductors possess a layered crystal structure composed of a stacking of spacer (blocking) layers and conduction (superconducting) layers, CuO2 planes or Fe-Anion layers. The spacer layers provide carriers to the conduction layers and induce exotic superconductivity. Recently, we have reported superconductivity in the novel BiS2-based layered compound Bi4O4S3. It was found that superconductivity of Bi4O4S3 originates from the BiS2 layers. The crystal structure is composed of a stacking of BiS2 superconducting layers and the spacer layers, which resembles those of high-Tc cuprate and the Fe-based superconductors. Here we report a discovery of a new type of BiS2-based layered superconductor LaO1-xFxBiS2, with a Tc as high as 10.6 K.

Iron-based superconductors researchElectronic and Structural Properties of Oxides2D Materials and ApplicationsSuperconductivityStackingCuprateThermal conductionCrystal structureCurse of dimensionalityElectronic structure
Citations
413
FWCI
18.38
field-weighted impact
References
21
Percentile
100%
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Citations per year
References
The superconductivity at 18 K in LiFeAs system
Solid State Communications · 2008 · 934 citations
A New High-T<sub>c</sub> Oxide Superconductor without a Rare Earth Element
Japanese Journal of Applied Physics · 1988 · 3,606 citations
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