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Antiferromagnetic opto-spintronics

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NATURE PHYSICS
卷 14, 期 3, 页码 229-241

出版社

NATURE PUBLISHING GROUP
DOI: 10.1038/s41567-018-0051-x

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资金

  1. Grant Agency of the Czech Republic [14-37427G]
  2. Ministry of Education of the Czech Republic [LM2015087]
  3. LNSM-LNSpin
  4. EU FET Open RIA grant [766566]
  5. Ministry of Education and Science of the Russian Federation [14.Z50.31.0034]
  6. European Research Council [681917]
  7. German Research Foundation through CRC/TRR [227]
  8. SNSF project [200021/147080]
  9. FAST
  10. European Research Council (ERC) [681917] Funding Source: European Research Council (ERC)

向作者/读者索取更多资源

Control and detection of spin order in ferromagnetic materials is the main principle enabling magnetic information to be stored and read in current technologies. Antiferromagnetic materials, on the other hand, are far less utilized, despite having some appealing features. For instance, the absence of net magnetization and stray fields eliminates crosstalk between neighbouring devices, and the absence of a primary macroscopic magnetization makes spin manipulation in antiferromagnets inherently faster than in ferromagnets. However, control of spins in antiferromagnets requires exceedingly high magnetic fields, and antiferromagnetic order cannot be detected with conventional magnetometry. Here we provide an overview and illustrative examples of how electromagnetic radiation can be used for probing and modification of the magnetic order in antiferromagnets. We also discuss possible research directions that are anticipated to be among the main topics defining the future of this rapidly developing field.

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