论文标题

控制范德华的各向异性

Controlling the anisotropy of a van der Waals antiferromagnet with light

论文作者

Afanasiev, D., Hortensius, J. R., Matthiesen, M., Mañas-Valero, S., Šiškins, M., Lee, M., Lesne, E., van der Zant, H. S. J., Steeneken, P. G., Ivanov, B. A., Coronado, E., Caviglia, A. D.

论文摘要

磁性范德华材料为探索低维磁性的基本原理和超薄旋转加工设备的新机会提供了理想的操场。 Mermin-Wagner定理表明,如减少的尺寸,各向同性自旋相互作用不能保留远程相关性。该顺序通过磁各向异性稳定。在这里,使用超短脉冲脉冲,我们展示了二维范德华抗抗铁磁体nips $ _3 $中磁各向异性的全光控制。在镍离子的晶体场分裂水平之间使用轨道过渡,调谐光子能量的共振,我们证明了子Thz二维镁模式的选择性激活。镁振幅的泵极化控制证实,激活受瞬时磁各向异性轴的控制,这是对轨道状态的光激发对称性降低的响应。我们的结果确立了轨道共振作为在低维(抗)铁磁体中操纵磁顺序的通用途径。

Magnetic van der Waals materials provide an ideal playground for exploring the fundamentals of low-dimensional magnetism and open new opportunities for ultrathin spin processing devices. The Mermin-Wagner theorem dictates that as in reduced dimensions isotropic spin interactions cannot retain long-range correlations; the order is stabilized by magnetic anisotropy. Here, using ultrashort pulses of light, we demonstrate all-optical control of magnetic anisotropy in the two-dimensional van der Waals antiferromagnet NiPS$_3$. Tuning the photon energy in resonance with an orbital transition between crystal-field split levels of the nickel ions, we demonstrate the selective activation of a sub-THz two-dimensional magnon mode. The pump polarization control of the magnon amplitude confirms that the activation is governed by the instantaneous magnetic anisotropy axis emergent in response to photoexcitation of orbital states with a lowered symmetry. Our results establish pumping of orbital resonances as a universal route for manipulating magnetic order in low-dimensional (anti)ferromagnets.

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