双子创造双子:电流和磁场诱导的增殖和聚集

IF 13.9 Q1 CHEMISTRY, MULTIDISCIPLINARY
Xichao Zhang, Yan Zhou, Xiuzhen Yu, Masahito Mochizuki
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引用次数: 0

摘要

拓扑自旋纹理在纳米和微米尺度上的聚集在自旋电子技术中有着实际应用。在此,作者报告了面内电流诱导双子在体手性磁体中的增殖和聚集。研究发现,只有在适当的面外磁场存在的情况下,自旋转移扭矩才能诱导双玻色子的增殖和聚集。研究还发现,相对较小的阻尼和相对较大的非绝热自旋转移力矩可导致更明显的双子增殖和聚集。特别是,电流密度应大于某个阈值才能引发增殖;也就是说,只有在弱电流注入的情况下,双子才可能被驱动平移运动。此外,作者还发现,电流注入后,聚合的双玻色子可以弛豫成变形的蜂窝状双玻色子晶格,并存在一些晶格结构缺陷。这些结果对于开发使用大量聚合双峰子的生物启发自旋电子器件大有可为。这些发现还为研究自旋电子系统中的聚集诱导效应(如聚集诱导的晶格相变)提供了一个平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Bimerons create bimerons: Proliferation and aggregation induced by currents and magnetic fields

Bimerons create bimerons: Proliferation and aggregation induced by currents and magnetic fields

Bimerons create bimerons: Proliferation and aggregation induced by currents and magnetic fields

The aggregation of topological spin textures at nano and micro scales has practical applications in spintronic technologies. Here, the authors report the in-plane current-induced proliferation and aggregation of bimerons in a bulk chiral magnet. It is found that the spin-transfer torques can induce the proliferation and aggregation of bimerons only in the presence of an appropriate out-of-plane magnetic field. It is also found that a relatively small damping and a relatively large non-adiabatic spin-transfer torque could lead to more pronounced bimeron proliferation and aggregation. Particularly, the current density should be larger than a certain threshold in order to trigger the proliferation; namely, the bimerons may only be driven into translational motion under weak current injection. Besides, the authors find that the aggregate bimerons could relax into a deformed honeycomb bimeron lattice with a few lattice structure defects after the current injection. The results are promising for the development of bio-inspired spintronic devices that use a large number of aggregate bimerons. The findings also provide a platform for studying aggregation-induced effects in spintronic systems, such as the aggregation-induced lattice phase transitions.

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来源期刊
CiteScore
17.40
自引率
0.00%
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审稿时长
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