Aoki Shunta, Dong Yu, Wang Ziqian, Huang Xiang S W, Itahashi Yuki M, Ogawa Naoki, Ideue Toshiya, Iwasa Yoshihiro
Department of Applied Physics, The University of Tokyo, Tokyo, 113-8656, Japan.
RIKEN Center for Emergent Matter Science (CEMS), Wako, 351-0198, Japan.
Adv Mater. 2024 May;36(21):e2312781. doi: 10.1002/adma.202312781. Epub 2024 Apr 2.
Multiferroic materials have attracted considerable attention owing to their unique magnetoelectric or magnetooptical properties. The recent discovery of few-layer van der Waals multiferroic crystals provides a new research direction for controlling the multiferroic properties in the atomic layer limit. However, research on few-layer multiferroic crystals is limited and the effect of thickness-dependent symmetries on those properties is less explored. In this study, the symmetries and magnetoelectric responses of van der Waals multiferroic CuCrPS are investigated by optical second harmonic generation (SHG). Structural and magnetic phase transitions are successfully probed by the temperature-dependent SHG signals, revealing significant changes by applying the magnetic field reflecting the magnetoelectric effect. Moreover, it is found that symmetries and resultant magnetoelectric responses can be modulated by the number of layers. These results offer a new principle of controlling the multiferroicity and indicate that 2D van der Waals multiferroic material is a promising building block for functional nanodevices.
多铁性材料因其独特的磁电或磁光特性而备受关注。最近发现的少层范德华多铁性晶体为在原子层极限内控制多铁性特性提供了一个新的研究方向。然而,关于少层多铁性晶体的研究有限,且厚度依赖对称性对这些特性的影响较少被探索。在本研究中,通过光学二次谐波产生(SHG)研究了范德华多铁性CuCrPS的对称性和磁电响应。通过与温度相关的SHG信号成功探测到结构和磁相变,揭示了施加反映磁电效应的磁场时的显著变化。此外,发现对称性和由此产生的磁电响应可以通过层数进行调制。这些结果提供了一种控制多铁性的新原理,并表明二维范德华多铁性材料是功能纳米器件的一个有前途的构建单元。