论文标题
Kagome磁铁TMMN $ _6 $ sn $ _6 $
Magneto-Transport Properties of Kagome Magnet TmMn$_6$Sn$_6$
论文作者
论文摘要
kagome磁铁通常会托有非平凡的电子或磁状态,在凝结物理物理学中引起了极大的兴趣。在本文中,我们报告了一项有关Kagome Magnet TMMN $ _6 $ sn $ _6 $的系统运输属性的系统研究。在跨越几个磁相的宽温度区域中观察到了突出的拓扑厅效应(The),并表现出较强的温度和场依赖性。由于非零自旋手性,这种新型现象表明伴随着强烈波动的非数量磁态可能出现。平面应用田间驱动平面霍尔效应(PHE)和分布性磁倍率(PAMR)在角度依赖的平面电阻率中表现出急剧的断开,违反了经验定律。通过使用有效场,我们确定将PAMR分为属于各种磁状态的两组的磁过渡。我们扩展了经验公式以扩展田间和温度依赖的平面磁磁性,并为平面传输行为提供了与各种磁状态之间的交叉相关的理解。我们的结果在具有复杂磁性结构的Kagome晶格存在多个非平凡的磁性状态下,在新型传输效果上阐明了灯光。
Kagome magnet usually hosts nontrivial electronic or magnetic states drawing great interests in condensed matter physics. In this paper, we report a systematic study on transport properties of kagome magnet TmMn$_6$Sn$_6$. The prominent topological Hall effect (THE) has been observed in a wide temperature region spanning over several magnetic phases and exhibits strong temperature and field dependence. This novel phenomenon due to non-zero spin chirality indicates possible appearance of nontrival magnetic states accompanying with strong fluctuations. The planar applied field drives planar Hall effect(PHE) and anistropic magnetoresisitivity(PAMR) exhibiting sharp disconnections in angular dependent planar resistivity violating the empirical law. By using an effective field, we identify a magnetic transition separating the PAMR into two groups belonging to various magnetic states. We extended the empirical formula to scale the field and temperature dependent planar magnetoresistivity and provide the understandings for planar transport behaviors with the crossover between various magnetic states. Our results shed lights on the novel transport effects in presence of multiple nontrivial magnetic states for the kagome lattice with complicated magnetic structures.