相关实验视频
Updated: Jul 19, 2025

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Direct Imaging of Laser-driven Ultrafast Molecular Rotation
Published on: February 4, 2017
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在平面上的重定位诱导了单个激光脉冲磁化反转
Y Peng1, D Salomoni2, G Malinowski3
1Université de Lorraine, CNRS, IJL, F-54000, Nancy, France.
Nature communications
|August 17, 2023
概括
单脉冲全光学切换现在可以在各种稀土过渡金属多层中实现,从而扩大了其适用性. 这个现象,这个现象.
科学领域:
- 材料科学 材料科学 材料科学
- 凝聚物质物理学 凝聚物质物理学
- 超快的磁力 超快的磁力
背景情况:
- 单脉冲全光学开关 (SP-AOS) 最初在GdFeCo铁磁铁中进行了演示.
- 最近,SP-AOS已经扩展到特定的MnRuGa合金和Tb/Co多层.
- 这些材料需要精确的厚度和组成来切换.
研究的目的:
- 在稀土过渡金属 (RE-TM) 多层中调查SP-AOS的普遍性.
- 探索激光脉冲持续时间对开关值的影响.
- 了解底层的磁化逆转机制.
主要方法:
- 制造各种RE-TM多层结构.
- 磁性属性的表征.
- 超快的光学探头实验使用 femtosecond 激光脉冲.
- 诱导磁域结构的分析.
主要成果:
- 在广泛的RE-TM多层中展示了SP-AOS,表明普遍性增加.
- 切换值流动性被发现是独立于激光脉冲持续时间.
- 在高激光强度下诱导了同心环域结构.
- 观察到在平面中的磁化重定向.
结论:
- 在RE-TM多层中,SP-AOS是一个比以前想象的更普遍的现象.
- 与基于Gd的材料相比,观察到的特征表明了明显的反转机制.
- 一个 precessional 逆转机制成功地解释了实验观测,包括在平面上的重定向和域结构.
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