State Key Laboratory of Magnetism and Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing, 100190, China.
School of Physical Sciences, University of Chinese Academy of Sciences, Beijing, 100049, China.
Adv Mater. 2018 Jul;30(27):e1706439. doi: 10.1002/adma.201706439. Epub 2018 May 25.
Antiferromagnetic spin dynamics is important for both fundamental and applied antiferromagnetic spintronic devices; however, it is rarely explored by external fields because of the strong exchange interaction in antiferromagnetic materials. Here, the photoinduced excitation of ultrafast antiferromagnetic spin dynamics is achieved by capping antiferromagnetic RFeO (R = Er or Dy) with an exchange-coupled ferromagnetic Fe film. Compared with antiferromagnetic spin dynamics of bare RFeO orthoferrite single crystals, which can be triggered effectively by ultrafast laser heating just below the phase transition temperature, the ultrafast photoinduced multimode antiferromagnetic spin dynamic modes, for exchange-coupled Fe/RFeO heterostructures, including quasiferromagnetic resonance, impurity, coherent phonon, and quasiantiferromagnetic modes, are observed in a temperature range of 10-300 K. These experimental results not only offer an effective means to trigger ultrafast antiferromagnetic spin dynamics of rare-earth orthoferrites, but also shed light on the ultrafast manipulation of antiferromagnetic magnetization in Fe/RFeO heterostructures.
反铁磁自旋动力学对于基础和应用的反铁磁自旋电子学器件都很重要;然而,由于反铁磁材料中的强交换相互作用,很少通过外部场来探索反铁磁自旋动力学。在这里,通过用交换耦合的铁磁 Fe 膜覆盖反铁磁 RFeO(R = Er 或 Dy)来实现超快反铁磁自旋动力学的光激发。与仅在相变温度以下通过超快激光加热有效触发的裸 RFeO 正交铁氧体单晶的反铁磁自旋动力学相比,对于交换耦合的 Fe/RFeO 异质结构,可以在 10-300 K 的温度范围内观察到超快光激发的多模反铁磁自旋动态模式,包括准铁磁共振、杂质、相干声子和类反铁磁模式。这些实验结果不仅提供了一种有效手段来触发稀土正交铁氧体的超快反铁磁自旋动力学,而且为在 Fe/RFeO 异质结构中超快操纵反铁磁磁化提供了思路。