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双层CrI₃中的光致超快相变

Photoinduced Ultrafast Phase Transition in Bilayer CrI.

作者信息

Liu Xiaopeng, Legut Dominik, Zhang Qianfan

机构信息

School of Materials Science and Engineering, Beihang University, Beijing 100191, P. R. China.

IT4Innovations, VSB-Technical University of Ostrava, 17. listopadu 2172/15, CZ-70800 Ostrava-Poruba, Czech Republic.

出版信息

J Phys Chem Lett. 2023 Aug 31;14(34):7744-7750. doi: 10.1021/acs.jpclett.3c01898. Epub 2023 Aug 22.

Abstract

In two-dimensional magnets, the ultrafast photoexcited method represents a low-power and high-speed method of switching magnetic states. Bilayer CrI (BLC) is an ideal platform for studying ultrafast photoinduced magnetic phase transitions due to its stacking-dependent magnetic properties. Here, by using time-dependent density functional theory, we explore the photoexcitation phase transition in BLC from the R- to M-stacked phase. This process is found to be induced by electron-phonon interactions. The activated and phonon modes in the direction drive the horizontal relative displacements between the layers. The activated mode in the direction leads to a transition potential reduction. Furthermore, this phase transition can invert the sign of the interlayer spin interaction, indicating a photoinduced transition from ferromagnet to antiferromagnet. This investigation has profound implications for magnetic phase engineering strategies.

摘要

在二维磁体中,超快光激发方法是一种切换磁态的低功耗、高速方法。双层CrI(BLC)由于其依赖堆叠的磁性,是研究超快光致磁相变的理想平台。在此,通过使用含时密度泛函理论,我们探索了BLC从R堆叠相到M堆叠相的光激发相变。发现该过程是由电子 - 声子相互作用诱导的。沿 方向激活的 和声子模式驱动层间的水平相对位移。沿 方向激活的 模式导致跃迁势降低。此外,这种相变可以反转层间自旋相互作用的符号,表明从铁磁体到反铁磁体的光致转变。这项研究对磁相工程策略具有深远意义。

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