Cite this article:
Zongxia Guo, Gregory Malinowski, Pierre Vallobra, Yi Peng, Yong Xu, Stéphane Mangin, Weisheng Zhao, Michel Hehn, Boyu Zhang. Ultrafast antiferromagnet rearrangement in Co/IrMn/CoGd trilayersJ. Chin. Phys. B, 2023, 32(8): 087507.
| Zongxia Guo, Gregory Malinowski, Pierre Vallobra, Yi Peng, Yong Xu, Stéphane Mangin, Weisheng Zhao, Michel Hehn, Boyu Zhang. Ultrafast antiferromagnet rearrangement in Co/IrMn/CoGd trilayersJ. Chin. Phys. B, 2023, 32(8): 087507. |
Ultrafast antiferromagnet rearrangement in Co/IrMn/CoGd trilayers
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Abstract
Antiferromagnets offer great potential for high-speed data processing applications, as they can expend spintronic devices from a static storage and gigahertz frequency range to the terahertz range. However, their zero net magnetization makes them difficult to manipulate and detect. In recent years, there has been a lot of attention given to the ultrafast manipulation of magnetic order using ultra-short single laser pulses, but it remains unknown whether a similar scenario can be observed in antiferromagnets. In this work, we demonstrate the manipulation of antiferromagnets with a single femtosecond laser pulse in perpendicular exchange-biased Co/IrMn/CoGd trilayers. We study the dual exchange bias interlayer interaction in quasi-static conditions and competition in ultrafast antiferromagnet rearrangement. Our results show that, compared to conventional ferromagnetic/antiferromagnetic systems, the IrMn antiferromagnet can be ultrafast and efficiently manipulated by the coupled CoGd ferrimagnetic layer, which paves the way for potential energy-efficient spintronic devices. -
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