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Tunable magnetic textures: From Majorana bound states to braiding

  • Alex Matos-Abiague
  • , Javad Shabani
  • , Andrew D. Kent
  • , Geoffrey L. Fatin
  • , Benedikt Scharf
  • , Igor Žutić
  • SUNY Buffalo
  • City University of New York
  • New York University
  • Cornell University
  • University of Würzburg

Research output: Contribution to journalArticlepeer-review

42 Scopus citations

Abstract

A versatile control of magnetic systems, widely used to store information, can also enable manipulating Majorana bounds states (MBS) and implementing fault-tolerant quantum information processing. The proposed platform relies on the proximity-induced superconductivity in a two-dimensional electron gas placed next to an array of magnetic tunnel junctions (MTJs). A change in the magnetization configuration in the MTJ array creates tunable magnetic textures thereby removing several typical requirements for MBS: strong spin-orbit coupling, applied magnetic field, and confinement by one-dimensional structures which complicates demonstrating non-Abelian statistics through braiding. Recent advances in fabricating two-dimensional epitaxial superconductor/semiconductor heterostructures and designing tunable magnetic textures support the feasibility of this novel platform for MBS.

Original languageEnglish
Pages (from-to)1-6
Number of pages6
JournalSolid State Communications
Volume262
DOIs
StatePublished - Aug 2017

Keywords

  • A. Magnetic tunnel junctions
  • A. Superconductors
  • A. Two-dimensional electron gas
  • D. Magnetic textures
  • D. Majorana bound states
  • D. Non-Abelian statistics

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