4.8 Article

Interface-induced room-temperature multiferroicity in BaTiO3

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NATURE MATERIALS
卷 10, 期 10, 页码 753-758

出版社

NATURE PUBLISHING GROUP
DOI: 10.1038/NMAT3098

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资金

  1. France-UK
  2. Triangle de la Physique contract 'OXISPINTRONICS'
  3. UK EPSRC [EP/E026206/I]
  4. Region Ile-de-France in the framework of C'Nano IdF
  5. European ESTEEM
  6. METSA networks
  7. European Research Council [267579]
  8. BMBF [05K10PC2]
  9. European Community [226716]
  10. Herschel-Smith fellowship
  11. European Research Council (ERC) [267579] Funding Source: European Research Council (ERC)

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Multiferroic materials possess two or more ferroic orders but have not been exploited in devices owing to the scarcity of room-temperature examples. Those that are ferromagnetic and ferroelectric have potential applications in multi-state data storage if the ferroic orders switch independently, or in electric-field controlled spintronics if the magnetoelectric coupling is strong. Future applications could also exploit toroidal moments and optical effects that arise from the simultaneous breaking of time-reversal and space-inversion symmetries. Here, we use soft X-ray resonant magnetic scattering and piezoresponse force microscopy to reveal that, at the interface with Fe or Co, ultrathin films of the archetypal ferroelectric BaTiO3 simultaneously possess a magnetization and a polarization that are both spontaneous and hysteretic at room temperature. Ab initio calculations of realistic interface structures provide insight into the origin of the induced moments and bring support to this new approach for creating room-temperature multiferroics.

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