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Direct detection of neighboring stray field interaction on a single nanodisk using micro-focused Brillouin Light Scattering spectroscopy

机译:使用微聚焦布里渊光散射光谱法直接检测单个纳米盘上的邻近杂散场相互作用

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摘要

Studying the effect of dipolar interaction between closely-packed nanodisks has become increasingly important in many applications such as high density information storage, magnonics crystals and spin torque oscillators. So far, these studies were focused on the collective magnetic behavior from an array rather than from a single disk under the influence of neighboring dipolar field. Recently, Keatley et al used a time-resolved scanning Kerr microscopy to isolate the dynamic dipolar interaction between a pair of nominally-shaped disks. However, a detailed scrutiny of phase-resolved Kerr ellipticity is required to determine, with limited accuracy, the dynamic dipolar coupling strength versus edge-to-edge spacing/diameter (s/d) ratio. In this work, we use a micro-focused Brillouin Light Scattering (μ-BLS) setup to systematically investigate the effect of increasing neighboring dipolar field on the dynamic behavior of a single nanodisk. Using pairs of identical disks with varying s, a direct detection of increasing neighboring dipolar field on a single disk is systematically performed. The influence of neighboring dipolar field in modifying the dynamic behavior of the resonance mode is evident in the measured spectra and the 2D mode profiles. In addition, by changing the relative orientation between the inter-disk coupling direction and the applied magnetic field (H) to be either parallel or perpendicular, different modes of dipolar interaction can be further distinguished.
机译:研究紧密堆积的纳米盘之间的偶极相互作用的影响在许多应用中变得越来越重要,例如高密度信息存储,磁晶和自旋扭矩振荡器。到目前为止,这些研究集中于在相邻偶极场的影响下来自阵列而不是来自单个磁盘的集体磁行为。最近,Keatley等人使用时间分辨扫描Kerr显微镜来隔离一对名义上形状的磁盘之间的动态偶极相互作用。但是,需要对相位分辨的Kerr椭圆率进行详细检查,才能以有限的精度确定动态偶极耦合强度与边对边间距/直径(s / d)之比。在这项工作中,我们使用微聚焦布里渊光散射(μ-BLS)设置来系统地研究增加相邻偶极场对单个纳米磁盘动态行为的影响。使用具有不同s的相同磁盘对,系统地执行了对单个磁盘上相邻偶极子场增加的直接检测。在测量的频谱和二维模式轮廓中,相邻偶极场对修改共振模式动态行为的影响是显而易见的。另外,通过将盘间耦合方向和所施加的磁场(H)之间的相对取向改变为平行或垂直,可以进一步区分偶极相互作用的不同模式。

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  • 会议地点 Beijing(CN)
  • 作者

    Shimon G.; Adeyeye A.;

  • 作者单位

    Electr. Comput. Eng., Nat. Univ. of Singapore, Singapore, Singapore;

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  • 原文格式 PDF
  • 正文语种 eng
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