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涡旋核驱动的磁化动力学。

Vortex core-driven magnetization dynamics.

作者信息

Choe S B, Acremann Y, Scholl A, Bauer A, Doran A, Stöhr J, Padmore H A

机构信息

Lawrence Berkeley National Laboratory (LBNL), 1 Cyclotron Road, Berkeley, CA 94720, USA.

出版信息

Science. 2004 Apr 16;304(5669):420-2. doi: 10.1126/science.1095068.

Abstract

Time-resolved x-ray imaging shows that the magnetization dynamics of a micron-sized pattern containing a ferromagnetic vortex is determined by its handedness, or chirality. The out-of-plane magnetization in the nanometer-scale vortex core induces a three-dimensional handedness in the planar magnetic structure, leading to a precessional motion of the core parallel to a subnanosecond field pulse. The core velocity was an order of magnitude higher than expected from the static susceptibility. These results demonstrate that handedness, already well known to be important in biological systems, plays an important role in the dynamics of microscopic magnets.

摘要

时间分辨X射线成像表明,包含铁磁涡旋的微米级图案的磁化动力学由其手性决定。纳米级涡旋核中的面外磁化在平面磁结构中诱导出三维手性,导致核平行于亚纳秒场脉冲进行进动运动。核速度比静态磁化率预期的高一个数量级。这些结果表明,手性在微观磁体动力学中起着重要作用,而手性在生物系统中的重要性已广为人知。

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