论文标题
BAMN $ _2 $ bi $ _2 $ antiferRomagnet
Large negative magnetoresistance in BaMn$_2$Bi$_2$ antiferromagnet
论文作者
论文摘要
当在垂直于Sublattice Magnatization的方向上施加磁场时,在反铁磁铁BAMN $ _2 $ _2 $的绝缘状态中观察到非常大的负磁磁性(LNMR)。高垂直磁场最终会抑制绝缘行为,并允许BAMN $ _2 $ bi $ _2 $重新进入金属状态。这种效应似乎与任何磁场引起的磁相变向无关,因为在高于$ 2 \,\ mathrm {k} $的温度下,磁敏感性和比热的测量结果没有发现任何异常作为磁场的函数。 LNMR出现在平面上和平面设置中,Hall效应表明,其起源在于HoleLike载体对无限型野外诱导的Sublattice磁化强度倾斜的传导过程的极端敏感性。因此,LNMR诱导的金属状态可能与垂直磁场和/或BAMN $ _2 $ bi $ _2 $的复杂多轨电子结构和/或复杂的多轨电子结构破坏了抗磁性平等时间对称性。
A very large negative magnetoresistance (LNMR) is observed in the insulating regime of the antiferromagnet BaMn$_2$Bi$_2$ when a magnetic field is applied perpendicular to the direction of the sublattice magnetization. High perpendicular magnetic field eventually suppresses the insulating behavior and allows BaMn$_2$Bi$_2$ to re-enter a metallic state. This effect is seemingly unrelated to any field induced magnetic phase transition, as measurements of magnetic susceptibility and specific heat did not find any anomaly as a function of magnetic fields at temperatures above $2\,\mathrm{K}$. The LNMR appears in both current-in-plane and current-out-of-plane settings, and Hall effects suggest that its origin lies in an extreme sensitivity of conduction processes of holelike carriers to the infinitesimal field-induced canting of the sublattice magnetization. The LNMR-induced metallic state may thus be associated with the breaking of the antiferromagnetic parity-time symmetry by perpendicular magnetic fields and/or the intricate multi-orbital electronic structure of BaMn$_2$Bi$_2$.