论文标题

螺旋磁顺序和费米表面在非中心对称SCFEGE中筑巢

Helical magnetic order and Fermi surface nesting in non-centrosymmetric ScFeGe

论文作者

Karna, Sunil K., Tristant, D., Hebert, J. K., Cao, G., Chapai, R., Phelan, W. A., Zhang, Q., Wu, Y., Dhital, C., Li, Y., Cao, H. B., Tian, W., Cruz, C. R. Dela, Aczel, A. A., Zaharko, O., Khasanov, A., McGuire, M. A., Roy, A., Xie, W., Browne, D. A., Vekhter, I., Meunier, V., Shelton, W. A., Adams, P. W., Sprunger, P. T., Young, D. P., Jin, R., DiTusa, J. F.

论文摘要

对非中心对称六角形SCFEGE的结构,磁,热力学和电荷传输特性的研究表明,它是一种各向异性金属,其过渡到弱静脉helimagnetic状态下方的helimagnetic状态$ t_n = 36 $ k。 =(0 0 0.193),磁矩为0.53 $μ_{b} $每个公式单元限制在{\ it ab}平面。密度函数理论的计算与这些测量值一致,并找到了几个频段,这些频段沿{\ it c}轴沿费米水平越过{\ it c}轴,几乎在费米能量上方的平面频段几乎退化。电气传输中发现的各向异性反映在计算出的费米表面,该表面由沿$ c $轴的几个扭曲的扁平板组成,其中有两个显着嵌套的区域,其中一个具有与中子衍射中发现的密切相匹配的波形。电子结构计算以及在$ t_n $处的{\ it C}轴电导率中的强烈异常,向费米表面驱动的磁过渡发出了类似于自旋密度波材料中的磁性转换。在{\ it ab}平面中施加的磁场导致阈值过渡,阈值范围为$ \ $ 6.7 t,以及较高的温度依赖性,不连续性和平面内电流的磁性标志的变化。因此,SCFEGE是研究面内磁场对易于平面磁系统的影响的理想系统,该磁场的相对强度和各向异性的相对强度决定了拓扑和磁性结构。

An investigation of the structural, magnetic, thermodynamic, and charge transport properties of non-centrosymmetric hexagonal ScFeGe reveals it to be an anisotropic metal with a transition to a weak itinerant incommensurate helimagnetic state below $T_N = 36$ K. Neutron diffraction measurements discovered a temperature and field independent helical wavevector \textbf{\textit{k}} = (0 0 0.193) with magnetic moments of 0.53 $μ_{B}$ per formula unit confined to the {\it ab}-plane. Density functional theory calculations are consistent with these measurements and find several bands that cross the Fermi level along the {\it c}-axis with a nearly degenerate set of flat bands just above the Fermi energy. The anisotropy found in the electrical transport is reflected in the calculated Fermi surface, which consists of several warped flat sheets along the $c$-axis with two regions of significant nesting, one of which has a wavevector that closely matches that found in the neutron diffraction. The electronic structure calculations, along with a strong anomaly in the {\it c}-axis conductivity at $T_N$, signal a Fermi surface driven magnetic transition, similar to that found in spin density wave materials. Magnetic fields applied in the {\it ab}-plane result in a metamagnetic transition with a threshold field of $\approx$ 6.7 T along with a sharp, strongly temperature dependent, discontinuity and a change in sign of the magnetoresistance for in-plane currents. Thus, ScFeGe is an ideal system to investigate the effect of in-plane magnetic fields on an easy-plane magnetic system, where the relative strength of the magnetic interactions and anisotropies determine the topology and magnetic structure.

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