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Anomalous independence of interface superconductivity from carrier density.

Authors :
Wu J
Pelleg O
Logvenov G
Bollinger AT
Sun YJ
Boebinger GS
Vanević M
Radović Z
Božović I
Source :
Nature materials [Nat Mater] 2013 Oct; Vol. 12 (10), pp. 877-81. Date of Electronic Publication: 2013 Aug 04.
Publication Year :
2013

Abstract

The recent discovery of superconductivity at the interface of two non-superconducting materials has received much attention. In cuprate bilayers, the critical temperature (Tc) can be significantly enhanced compared with single-phase samples. Several explanations have been proposed, invoking Sr interdiffusion, accumulation and depletion of mobile charge carriers, elongation of the copper-to-apical-oxygen bond length, or a beneficial crosstalk between a material with a high pairing energy and another with a large phase stiffness. From each of these models, one would predict Tc to depend strongly on the carrier density in the constituent materials. Here, we study combinatorial libraries of La(2-x)Sr(x)CuO4-La2CuO4 bilayer samples--an unprecedentedly large set of more than 800 different compositions. The doping level x spans a wide range, 0.15 < x < 0.47, and the measured Hall coefficient varies by one order of magnitude. Nevertheless, across the entire sample set, Tc stays essentially constant at about 40 K. We infer that doping up to the optimum level does not shift the chemical potential, unlike in ordinary Fermi liquids. This result poses a new challenge to theory--cuprate superconductors have not run out of surprises.

Details

Language :
English
ISSN :
1476-4660
Volume :
12
Issue :
10
Database :
MEDLINE
Journal :
Nature materials
Publication Type :
Academic Journal
Accession number :
23913171
Full Text :
https://doi.org/10.1038/nmat3719