论文标题
巨大磁力耐药性Ferrimagnet Mn3Si2Te6中的磁性结构和自旋波动6
Magnetic Structure and Spin Fluctuations in Colossal Magnetoresistance Ferrimagnet Mn3Si2Te6
论文作者
论文摘要
铁磁性绝缘子MN3SI2TE6在78 K时具有居里温度TC和微妙而相应的磁性挫败感,当沿着磁性硬轴施加磁场时,具有巨大的磁性(CMR),与现有的先例令人惊讶。 Ni,H。Zhao,Y。Zhang等。物理。 Rev. B 103,L161105(2021)]。这一发现激发了一项彻底的单晶中子衍射研究,以便深入了解磁性结构及其与新型CMR的隐藏相关性。在这里,我们报告了TC下方的非共线磁结构,其中矩的主要位于基础平面内,但在环境条件下向C轴倾斜〜10O。大量的磁性弥散散射缓慢衰减,并且持续稳定在TC上方。自旋相关长度的演变与电阻率非常吻合,强调了自旋波动的作用,导致过渡附近的磁倍率。沿C轴的磁场应用迅速发生CMR,但仅将磁矩向C轴缓慢倾斜。无与伦比的变化表明磁极化的非结果作用。
The ferrimagnetic insulator Mn3Si2Te6, which features a Curie temperature Tc at 78 K and a delicate yet consequential magnetic frustration, exhibits colossal magnetoresistance (CMR) when the magnetic field is applied along the magnetic hard axis, surprisingly inconsistent with existing precedents [Y. Ni, H. Zhao, Y. Zhang et al. Phys. Rev. B 103, L161105 (2021)]. This discovery motivates a thorough single-crystal neutron diffraction study in order to gain insights into the magnetic structure and its hidden correlation with the new type of CMR. Here we report a noncollinear magnetic structure below the Tc where the moments lie predominantly within the basal plane but tilt toward the c axis by ~10o at ambient conditions. A substantial magnetic diffuse scattering decays slowly and persists well above the Tc. The evolution of the spin correlation lengths agrees well with the electrical resistivity, underscoring the role of spin fluctuation contributing to the magnetoresistivity near the transition. Application of magnetic field along the c axis, renders a swift occurrence of CMR but only a slow tilting of the magnetic moments toward the c axis. The unparalleled changes indicate a non-consequential role of magnetic polarization.