Interface superconductor with gap behaviour like a high-temperature superconductor
C. Richter,
H. Boschker,
W. Dietsche,
E. Fillis-Tsirakis,
R. Jany,
F. Loder,
L. F. Kourkoutis,
D. A. Muller,
J. R. Kirtley,
C. W. Schneider and
J. Mannhart ()
Additional contact information
C. Richter: Max Planck Institute for Solid State Research, 70569 Stuttgart, Germany
H. Boschker: Max Planck Institute for Solid State Research, 70569 Stuttgart, Germany
W. Dietsche: Max Planck Institute for Solid State Research, 70569 Stuttgart, Germany
E. Fillis-Tsirakis: Max Planck Institute for Solid State Research, 70569 Stuttgart, Germany
R. Jany: Experimental Physics VI, Center for Electronic Correlations and Magnetism, Augsburg University, 86135 Augsburg, Germany
F. Loder: Experimental Physics VI, Center for Electronic Correlations and Magnetism, Augsburg University, 86135 Augsburg, Germany
L. F. Kourkoutis: School of Applied and Engineering Physics, Cornell University
D. A. Muller: School of Applied and Engineering Physics, Cornell University
J. R. Kirtley: Center for Probing the Nanoscale, Stanford University
C. W. Schneider: Paul Scherrer Institut, 5232 Villigen, Switzerland
J. Mannhart: Max Planck Institute for Solid State Research, 70569 Stuttgart, Germany
Nature, 2013, vol. 502, issue 7472, 528-531
Abstract:
The density of states in a two-dimensional superconductor has an energy gap that behaves analogously to that in a high-transition-temperature copper oxide superconductor as a function of charge carrier density, suggesting that such behaviour could be a general property of two-dimensional superconductivity.
Date: 2013
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DOI: 10.1038/nature12494
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