论文标题

抗铁磁拓扑绝缘子的纳米力学表征

Nanomechanical Characterization of an Antiferromagnetic Topological Insulator

论文作者

Liu, Shuwan, Chong, Su Kong, Kim, Dongwook, Vashist, Amit, Kumar, Rohit, Lee, Seng Huat, Wang, Kang L., Mao, Zhiqiang, Liu, Feng, Deshpande, Vikram V.

论文摘要

抗磁性拓扑绝缘子MNBI2TE4(MBT)具有研究外来拓扑现象和磁性特性的理想平台。 MBT家族材料中磁相变的运输特征已得到充分研究。但是,它们的机械性能和磁力耦合尚未得到充分探索。我们使用纳米机电系统通过其磁性耦合来研究MBT薄片中的固有磁性。我们研究了从抗铁磁(AFM)到倾斜的抗铁磁(CAFM)到铁电磁(FM)相对于不同温度下的磁场的机械共振特征。 MBT中的自旋流动过渡通过机械共振的频移揭示。随着温度高于TN的温度,在谐振频率图中的过渡消失,与传输测量值一致。我们使用磁性模型将频移与旋转状态相关联。我们的工作展示了一种研究磁相变,磁化和磁弹性特性的技术。

The antiferromagnetic topological insulator MnBi2Te4 (MBT) exhibits an ideal platform to study exotic topological phenomena and magnetic properties. The transport signatures of magnetic phase transitions in the MBT family materials have been well-studied. However, their mechanical properties and magneto-mechanical coupling have not been well-explored. We use nanoelectromechanical systems to study the intrinsic magnetism in MBT thin flakes via their magnetostrictive coupling. We investigate mechanical resonance signatures of magnetic phase transitions from antiferromagnetic (AFM) to canted antiferromagnetic (cAFM) to ferromagnetic (FM) phases versus magnetic field at different temperatures. The spin-flop transitions in MBT are revealed by frequency shifts of mechanical resonance. With temperatures going above TN, the transitions disappear in the resonance frequency map, consistent with transport measurements. We use a magnetostrictive model to correlate the frequency shifts with the spin-canting states. Our work demonstrates a technique to study magnetic phase transitions, magnetization and magnetoelastic properties of the magnetic topological insulator.

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