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Superconducting Proximity Effect and Majorana Fermions at the Surface of a Topological Insulator

Physical Review Letters · 2008 · Vol. 100(9) · pp. 096407–096407
Liang FuC. L. Kane

Abstract

We study the proximity effect between an s-wave superconductor and the surface states of a strong topological insulator. The resulting two-dimensional state resembles a spinless px+ipy superconductor, but does not break time reversal symmetry. This state supports Majorana bound states at vortices. We show that linear junctions between superconductors mediated by the topological insulator form a nonchiral one-dimensional wire for Majorana fermions, and that circuits formed from these junctions provide a method for creating, manipulating, and fusing Majorana bound states.

Topological Materials and PhenomenaAdvanced Condensed Matter PhysicsGraphene research and applicationsMAJORANABound statePhysicsTopological insulatorFermionSuperconductivityCondensed matter physicsTopology (electrical circuits)Majorana fermionSurface states
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References
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Physics Letters B · 1983 · 1,699 citations
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Annals of Physics · 2003 · 7,123 citations
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