论文标题

范德华磁铁CRI3中的热障碍驱动磁相

Thermal disorder driven magnetic phases in van der Waals magnet CrI3

论文作者

Meseguer-Sanchez, Jaume, Wahab, Dina Abdul, Luetkens, Hubertus, Taniashvili, Grigol, Navarro-Moratalla, Efren, Guguchia, Zurab, Santos, Elton J. G.

论文摘要

磁相转变通常在特定的临界温度下自发发生。在几种化合物中观察到了多个临界温度(TC)的存在,在几种化合物中,竞争磁性顺序的共存突出了由不同因素(例如压力,温度和化学成分)驱动的相位分离的重要性。然而,尚不清楚最近是否发现了二维(2D)范德壁(VDW)磁性材料表现出如此有趣的现象,可以导致具有丰富的相图具有待探索的新型磁性特征。在这里,我们在2D VDW磁铁CRI3中显示了在不同TC处存在三个磁相变状,该互补的MUON自旋松弛旋转套件,超导量子干扰器械磁力计和大规模的原子化模拟,包括高阶交换相互作用。我们发现,在61 K时传统上鉴定出的块状Cri3的居里温度与晶体的完整体积(VM)中的远距离顺序不符,而是部分过渡,而少于25%的VM被磁性自旋排序。该过渡由高度无序的结构域组成,其磁化强度SZ的简易轴成分不是完全自旋的偏振,而是在整个层上被平面成分(SX,SY)无序。随着系统的冷却,在50 K和25 K处进行了两个附加的相变,将系统驱动到80%和磁有序的数量的近100%,其中铁磁基态具有明显的SZ特征,但也显示了SX和SY对总磁化的有限贡献。我们的结果表明,在体积竞争的电子相中,在CRI3的磁性特性中起着重要的作用,这使磁性设备平台的开发阈值温度要低得多。

Magnetic phase transitions often occur spontaneously at specific critical temperatures. The presence of more than one critical temperature (Tc) has been observed in several compounds where the coexistence of competing magnetic orders highlights the importance of phase separation driven by different factors such as pressure, temperature and chemical composition. However, it is unknown whether recently discovered two-dimensional (2D) van der Walls (vdW) magnetic materials show such intriguing phenomena that can result in rich phase diagrams with novel magnetic features to be explored. Here we show the existence of three magnetic phase transitions at different Tc's in 2D vdW magnet CrI3 revealed by a complementary suite of muon spin relaxation-rotation, superconducting quantum interference device magnetometry, and large-scale atomistic simulations including higher-order exchange interactions. We find that the traditionally identified Curie temperature of bulk CrI3 at 61 K does not correspond to the long-range order in the full volume (VM) of the crystal but rather a partial transition with less than 25% of VM being magnetically spin-ordered. This transition is composed of highly disordered domains with the easy-axis component of the magnetization Sz not being fully spin-polarized but disordered by in-plane components (Sx, Sy) over the entire layer. As the system cools down, two additional phase transitions at 50 K and 25 K drive the system to 80% and nearly 100% of the magnetically ordered volume, respectively, where the ferromagnetic ground state has a marked Sz character yet also displaying finite contributions of Sx and Sy to the total magnetization. Our results indicate that volume-wise competing electronic phases play an important role in the magnetic properties of CrI3 which set a much lower threshold temperature for exploitation in magnetic device-platforms than initially considered.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源