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Imaging and writing magnetic domains in the non-collinear antiferromagnet Mn3Sn

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2019

Autor:innen

Reichlova, Helena
Janda, Tomas
Godinho, Joao
Markou, Anastasios
Kriegner, Dominik
Schlitz, Richard
Zelezny, Jakub
Soban, Zbynek
Bejarano, Mauricio
et al.

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Nature Communications. Nature Publishing Group. 2019, 10, 5459. eISSN 2041-1723. Available under: doi: 10.1038/s41467-019-13391-z

Zusammenfassung

Non-collinear antiferromagnets are revealing many unexpected phenomena and they became crucial for the field of antiferromagnetic spintronics. To visualize and prepare a well-defined domain structure is of key importance. The spatial magnetic contrast, however, remains extraordinarily difficult to be observed experimentally. Here, we demonstrate a magnetic imaging technique based on a laser induced local thermal gradient combined with detection of the anomalous Nernst effect. We employ this method in one the most actively studied representatives of this class of materials-Mn3Sn. We demonstrate that the observed contrast is of magnetic origin. We further show an algorithm to prepare a well-defined domain pattern at room temperature based on heat assisted recording principle. Our study opens up a prospect to study spintronics phenomena in non-collinear antiferromagnets with spatial resolution.

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Fachgebiet (DDC)
530 Physik

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Information storage; Magnetic properties and materials; Spintronics; Surfaces, interfaces and thin films

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ISO 690REICHLOVA, Helena, Tomas JANDA, Joao GODINHO, Anastasios MARKOU, Dominik KRIEGNER, Richard SCHLITZ, Jakub ZELEZNY, Zbynek SOBAN, Mauricio BEJARANO, Sebastian T. B. GOENNENWEIN, 2019. Imaging and writing magnetic domains in the non-collinear antiferromagnet Mn3Sn. In: Nature Communications. Nature Publishing Group. 2019, 10, 5459. eISSN 2041-1723. Available under: doi: 10.1038/s41467-019-13391-z
BibTex
@article{Reichlova2019Imagi-52289,
  year={2019},
  doi={10.1038/s41467-019-13391-z},
  title={Imaging and writing magnetic domains in the non-collinear antiferromagnet Mn<sub>3</sub>Sn},
  volume={10},
  journal={Nature Communications},
  author={Reichlova, Helena and Janda, Tomas and Godinho, Joao and Markou, Anastasios and Kriegner, Dominik and Schlitz, Richard and Zelezny, Jakub and Soban, Zbynek and Bejarano, Mauricio and Goennenwein, Sebastian T. B.},
  note={Article Number: 5459}
}
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    <dcterms:abstract xml:lang="eng">Non-collinear antiferromagnets are revealing many unexpected phenomena and they became crucial for the field of antiferromagnetic spintronics. To visualize and prepare a well-defined domain structure is of key importance. The spatial magnetic contrast, however, remains extraordinarily difficult to be observed experimentally. Here, we demonstrate a magnetic imaging technique based on a laser induced local thermal gradient combined with detection of the anomalous Nernst effect. We employ this method in one the most actively studied representatives of this class of materials-Mn&lt;sub&gt;3&lt;/sub&gt;Sn. We demonstrate that the observed contrast is of magnetic origin. We further show an algorithm to prepare a well-defined domain pattern at room temperature based on heat assisted recording principle. Our study opens up a prospect to study spintronics phenomena in non-collinear antiferromagnets with spatial resolution.</dcterms:abstract>
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