Long-range magnetic coupling between nanoscale organic-metal hybrids mediated by a nanoskyrmion lattice

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Autor/in:
Erscheinungsjahr:
2014
Medientyp:
Text
Schlagworte:
  • Magnetoresistance
  • Magnetoelectronics
  • Organic spintronics
  • Organic Light Emitting Diodes (OLED)
  • Solar Cells
  • Conjugated Polymers
  • Magnetoresistance
  • Magnetoelectronics
  • Organic spintronics
  • Organic Light Emitting Diodes (OLED)
  • Solar Cells
  • Conjugated Polymers
Beschreibung:
  • The design of nanoscale organic-metal hybrids with tunable magnetic properties as well as the realization of controlled magnetic coupling between them open gateways for novel molecular spintronic devices. Progress in this direction requires a combination of a clever choice of organic and thin-film materials, advanced magnetic characterization techniques with a spatial resolution down to the atomic length scale, and a thorough understanding of magnetic properties based on first-principles calculations. Here, we make use of carbon-based systems of various nanoscale size, such as single coronene molecules and islands of graphene, deposited on a skyrmion lattice of a single atomic layer of iron on an iridium substrate, in order to tune the magnetic characteristics (for example, magnetic moments, magnetic anisotropies and coercive field strengths) of the organic-metal hybrids. Moreover, we demonstrate long-range magnetic coupling between individual organic-metal hybrids via the chiral magnetic skyrmion lattice, thereby offering viable routes towards spin information transmission between magnetically stable states in nanoscale dimensions.
Lizenz:
  • info:eu-repo/semantics/restrictedAccess
Quellsystem:
Forschungsinformationssystem der UHH

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oai:www.edit.fis.uni-hamburg.de:publications/c219e96f-81b1-4887-8bbf-bc50a63f778d