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首页> 外文期刊>Journal of Applied Physics >Spatially resolved ferromagnetic resonance: Imaging of ferromagnetic eigenmodes
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Spatially resolved ferromagnetic resonance: Imaging of ferromagnetic eigenmodes

机译:空间分辨的铁磁共振:铁磁本征模成像

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Fast magnetization dynamics of ferromagnetic elements on sub-micron length scales is currently attracting substantial scientific interest. Studying the ferromagnetic eigenmodes in such systems provides valuable information in order to trace back the dynamical response to the underlying micromagnetic properties. The inherent time structure of third generation synchrotron sources allows for time-resolved imaging (time resolution: 70-100 ps) of magnetization dynamics at soft x-ray microscopes (lateral resolution down to 20 nm). Stroboscopic pump-and-probe experiments were performed on micron-sized Permalloy samples at a full-field magnetic transmission x-ray microscope (XM-1, beamline 6.1.2) at the ALS at Berkeley, CA. Complementary to these time-domain experiments a frequency-domain "spatially resolved ferromagnetic resonance" (SR-FMR) technique was applied to magnetic x-ray microscopy. In contrast to time-domain measurements which reflect a broadband excitation of the magnetization, the frequency-domain SR-FMR technique allows for detailed studies of specific ferromagnetic eigenmodes. First SR-FMR experiments at a scanning x-ray transmission microscope (STXM, ALS, BL 11.0.2) are reported. The sample, a 1 X 1 μm~2 Permalloy pattern, was excited by an alternating magnetic field with a frequency of 250 MHz. By varying the phase relation between the sine excitation and the x-ray flashes of the synchrotron, the dynamics of a vortex motion eigenmode was investigated in time and space.
机译:铁磁元件在亚微米长度尺度上的快速磁化动力学目前引起了广泛的科学兴趣。在此类系统中研究铁磁本征模式可提供有价值的信息,以便追溯对基础微磁特性的动力响应。第三代同步加速器源的固有时间结构允许在软X射线显微镜(横向分辨率低至20 nm)下对磁化动力学进行时间分辨成像(时间分辨率:70-100 ps)。在加州伯克利的ALS的全场磁透射X射线显微镜(XM-1,束线6.1.2)上对微米级坡莫合金样品进行了频闪泵浦和探针实验。作为对这些时域实验的补充,将频域“空间分辨铁磁共振”(SR-FMR)技术应用于磁X射线显微镜。与反映磁化的宽带激励的时域测量相反,频域SR-FMR技术允许对特定铁磁本征模式进行详细研究。报告了在扫描X射线透射显微镜(STXM,ALS,BL 11.0.2)上进行的首次SR-FMR实验。 1 X 1μm〜2坡莫合金图案的样品被频率为250 MHz的交变磁场激发。通过改变正弦激励与同步加速器X射线闪光之间的相位关系,研究了涡旋运动本征模的时空动力学。

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