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The prospect of coupling a two-dimensional (2D) semiconductor heterostructure to a superconductor opens new research and technology opportunities, including fundamental problems in mesoscopic superconductivity, scalable superconducting electronics, and new topological states of matter.
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Signatures of Majorana Fermions in Hybrid Superconductor-Semiconductor Nanowire Devices
Electrostatic tailoring of magnetic interference in quantum point contact ballistic Josephson junctions
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Mourik, V. et al · 2012
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Zero-bias peaks and splitting in an Al-InAs nanowire topological superconductor as a signature of Majorana fermions
Das, A. et al · 2012
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Anomalous Zero-Bias Conductance Peak in a Nb–InSb Nanowire–Nb Hybrid Device
Deng, M. T. et al · 2012
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Universal Broadening of the Bardeen-Cooper-Schrieffer Coherence Peak of Disordered Superconducting Films
Feigel’man, M. V. & Skvortsov, M. A · 2012
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Universal Broadening of the Bardeen-Cooper-Schrieffer Coherence Peak of Disordered Superconducting Films
Feigel’man, M. V. & Skvortsov, M. A · 2012
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Soft Superconducting Gap in Semiconductor Majorana Nanowires
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Effects of large induced superconducting gap on semiconductor Majorana nanowires
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Hard gap in epitaxial semiconductor–superconductor nanowires
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Higginbotham, A. P. et al · 2015
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Two-dimensional epitaxial superconductor-semiconductor heterostructures: A platform for topological superconducting networks
Shabani, J. et al · 2016
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Ballistic Majorana nanowire devices
Zhang, H. et al · 2016
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