论文标题

铁磁范德华晶体Cri3中的相干螺旋依赖性自旋振荡

Coherent Helicity-Dependent Spin-Phonon Oscillations in the Ferromagnetic van der Waals Crystal CrI3

论文作者

Padmanabhan, P., Buessen, F. L., Tutchton, R., Kwock, K. W. C., Gilinsky, S., Lee, M. C., McGuire, M. A., Singamaneni, S. R., Yarotski, D. A., Paramekanti, A., Zhu, J. -X., Prasankumar, R. P.

论文摘要

托管固有的远程磁性顺序的二维(2D)系统的发现代表了范德华(VDW)材料丰富的物理景观的开创性。 CRI3可能是最突出的例子,因为晶体结构和磁性的相互依赖性以及较强的光结合相互作用提供了一个有希望的平台,以探索在2D极限处的磁性,振动和电荷自由度的光学控制。然而,很少探索结构与磁性之间这种关系的基本问题在其内在的时间尺度上表现出来。在这里,我们使用超快的光谱法来探测CRI3中的磁性和振动动力学,揭示了由自旋翼散射和明显地,晶格振动与自旋振荡之间的强烈短暂交换介导的相互作用,揭示了磁磁化动力学。后者产生了一个连贯的自旋耦合的声子模式,该模式对磁性相位的驱动脉冲的螺旋性高度敏感。我们的结果阐明了超快时间标准上VDW磁铁中自旋晶格耦合的性质,并突出了它们的应用潜力,需要在纳米级上进行非热,高速控制磁性。

The discovery of two-dimensional (2D) systems hosting intrinsic long-range magnetic order represents a seminal addition to the rich physical landscape of van der Waals (vdW) materials. CrI3 has emerged as perhaps the most salient example, as the interdependence of crystalline structure and magnetic order, along with strong light-matter interactions provides a promising platform to explore the optical control of magnetic, vibrational, and charge degrees of freedom at the 2D limit. However, the fundamental question of how this relationship between structure and magnetism manifests on their intrinsic timescales has rarely been explored. Here, we use ultrafast optical spectroscopy to probe magnetic and vibrational dynamics in CrI3, revealing demagnetization dynamics governed by spin-flip scattering and remarkably, a strong transient exchange-mediated interaction between lattice vibrations and spin oscillations. The latter yields a coherent spin-coupled phonon mode that is highly sensitive to the helicity of the driving pulse in the magnetically ordered phase. Our results shed light on the nature of spin-lattice coupling in vdW magnets on ultrafast timescales and highlight their potential for applications requiring non-thermal, high-speed control of magnetism at the nanoscale.

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