Dohi Takaaki, Weißenhofer Markus, Kerber Nico, Kammerbauer Fabian, Ge Yuqing, Raab Klaus, Zázvorka Jakub, Syskaki Maria-Andromachi, Shahee Aga, Ruhwedel Moritz, Böttcher Tobias, Pirro Philipp, Jakob Gerhard, Nowak Ulrich, Kläui Mathias
Institut für Physik, Johannes Gutenberg-Universität Mainz, Staudingerweg 7, 55128, Mainz, Germany.
Laboratory for Nanoelectronics and Spintronics, Research Institute of Electrical Communication, Tohoku University, Sendai, 980-8577, Japan.
Nat Commun. 2023 Sep 11;14(1):5424. doi: 10.1038/s41467-023-40720-0.
Magnetic skyrmions, topologically-stabilized spin textures that emerge in magnetic systems, have garnered considerable interest due to a variety of electromagnetic responses that are governed by the topology. The topology that creates a microscopic gyrotropic force also causes detrimental effects, such as the skyrmion Hall effect, which is a well-studied phenomenon highlighting the influence of topology on the deterministic dynamics and drift motion. Furthermore, the gyrotropic force is anticipated to have a substantial impact on stochastic diffusive motion; however, the predicted repercussions have yet to be demonstrated, even qualitatively. Here we demonstrate enhanced thermally-activated diffusive motion of skyrmions in a specifically designed synthetic antiferromagnet. Suppressing the effective gyrotropic force by tuning the angular momentum compensation leads to a more than 10 times enhanced diffusion coefficient compared to that of ferromagnetic skyrmions. Consequently, our findings not only demonstrate the gyro-force dependence of the diffusion coefficient but also enable ultimately energy-efficient unconventional stochastic computing.
磁斯格明子是出现在磁性系统中的拓扑稳定自旋纹理,由于受拓扑结构支配的各种电磁响应而备受关注。产生微观旋向力的拓扑结构也会产生不利影响,比如斯格明子霍尔效应,这是一个经过充分研究的现象,突出了拓扑结构对确定性动力学和漂移运动的影响。此外,旋向力预计会对随机扩散运动产生重大影响;然而,即使是定性地,预测的影响也尚未得到证实。在这里,我们展示了在一种特别设计的合成反铁磁体中,斯格明子的热激活扩散运动增强。通过调整角动量补偿来抑制有效旋向力,导致扩散系数比铁磁斯格明子提高了10倍以上。因此,我们的发现不仅证明了扩散系数对陀螺力的依赖性,还最终实现了高能效的非常规随机计算。