论文标题

在超低电流密度处的天际晶格爬行

Skyrmion lattice creep at ultra-low current densities

论文作者

Luo, Yongkang, Lin, Shizeng, Leroux, M., Wakeham, N., Fobes, D. M., Bauer, E. D., Betts, J. B., Migliori, A., Thompson, J. D., Janoschek, M., Maiorov, Boris

论文摘要

磁性天际非常适合编码信息,因为它们是纳米大小的,拓扑稳定的,并且仅需要从基础原子晶格中depin的超低临界电流密度$ j_c $。高于$ J_C $ Skyrmions表现出良好的控制动作,使其成为赛车记忆的主要候选人。在薄膜中,根据理论预测的,在$ j_c $以下观察到了孤立的天空的热激活蠕变运动。不受控制的Skyrmion运动对赛车记忆有害,尚未完全理解。值得注意的是,在散装材料中的Skyrmion晶格蠕变仍有待探索。在这里,我们使用谐振超声光谱法 - 一种对天空和原子晶格之间的耦合高度敏感的探针 - 原型的Skyrmion晶格材料MNSI在$ j_c^*$中发生的探针仅为$ j_c $的4%。我们的实验与Anderson-kim理论非常吻合,以使我们在超低电流密度下揭示新的动态状态,其特征在于热激活的Skyyrmion-lattice-creep,并对应用产生重要的后果。

Magnetic skyrmions are well-suited for encoding information because they are nano-sized, topologically stable, and only require ultra-low critical current densities $j_c$ to depin from the underlying atomic lattice. Above $j_c$ skyrmions exhibit well-controlled motion, making them prime candidates for race-track memories. In thin films thermally-activated creep motion of isolated skyrmions was observed below $j_c$ as predicted by theory. Uncontrolled skyrmion motion is detrimental for race-track memories and is not fully understood. Notably, the creep of skyrmion lattices in bulk materials remains to be explored. Here we show using resonant ultrasound spectroscopy--a probe highly sensitive to the coupling between skyrmion and atomic lattices--that in the prototypical skyrmion lattice material MnSi depinning occurs at $j_c^*$ that is only 4 percent of $j_c$. Our experiments are in excellent agreement with Anderson-Kim theory for creep and allow us to reveal a new dynamic regime at ultra-low current densities characterized by thermally-activated skyrmion-lattice-creep with important consequences for applications.

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