论文标题

在范德华磁料中站立自旋波的证据

Evidence of standing spin-waves in a van der Waals magnetic material

论文作者

Kapoor, Lucky N., Mandal, Supriya, Patankar, Meghan, Manni, Soham, Thamizhavel, A., Deshmukh, Mandar M.

论文摘要

已经研究了自旋波,用于根据替代电子的潜力在Spintronics领域的数据存储,通信和逻辑电路。最近在二维(2D)系统中发现了磁性,例如Monolayer CRI $ _3 $和Cr $ _2 $ ge $ _2 $ _2 $ _6 $ $ _6 $,导致了在2D限制中以磁性应用的重新利益。在这里,我们提供了直接的旋转波的直接证据,以及范德华磁性材料中均匀的进型共振模式,crcl $ _3 $。我们的实验是对站立自旋模式的第一个直接观察,该模式在范德华材料中以20 $ $ m的厚度设置为20 $ $ m。我们在光学和声学的附近检测到抗磁共振共鸣的分支的站立波浪。我们还观察到磁杆磁耦合,与温度的共振模式的软化,并提取层间交换场的演变作为温度的函数。

Spin-waves have been studied for data storage, communication and logic circuits in the field of spintronics based on their potential to substitute electrons. Recent discovery of magnetism in two-dimensional (2D) systems such as monolayer CrI$_3$ and Cr$_2$Ge$_2$Te$_6$ has led to a renewed interest in such applications of magnetism in the 2D limit. Here we present direct evidence of standing spin-waves along with the uniform precessional resonance modes in van der Waals magnetic material, CrCl$_3$. Our experiment is the first direct observation of standing spin-wave modes, set up across a thickness of 20 $μ$m, in a van der Waals material. We detect standing spin-waves in the vicinity of both, optical and acoustic, branches of the antiferromagnetic resonance. We also observe magnon-magnon coupling, softening of resonance modes with temperature and extract the evolution of interlayer exchange field as a function of temperature.

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