论文标题

在呼吸磁FEP中以拓扑驱动的线性磁性磁性

Topologically-Driven Linear Magnetoresistance in Helimagnetic FeP

论文作者

Campbell, D. J., Collini, J., Slawinska, J., Autieri, C., Wang, L., Wang, K., Wilfong, B., Eo, Y. S., Neves, P., Graf, D., Rodriguez, E. E., Butch, N. P., Nardelli, M. Buongiorno, Paglione, J.

论文摘要

Helimagnet FEP是具有MNP型结构的二元PNICTIDE材料家族的一部分,该材料具有非甲形成晶体对称性,可通过元素组成的变化来保留通用带结构的特性。它显示出许多相似之处,包括在磁性方面,与同源性CRA和MNP,这两种化合物在施加压力下驱动到超导性。在这里,我们在FEP的高质量单晶体上提出了一系列高磁场实验,表明,电阻不仅在没有饱和的情况下增加了几百倍的零场值35 t,而且当该场沿晶体学C轴上准确对齐时,它在整个场上都表现出异常的线性场依赖性。量子振荡频率与电子结构计算的密切比较将此方向连接到频带结构中的半迪拉克点,该频段结构中的半迪拉克点在平面垂直于场的平面上线性分散,这是整个材料家族的对称性保护特征。我们表明,在该系统中,MR大振幅和线性场依赖性的两个引人注目的特征可能是由于有序的磁性和拓扑结构的结合而引起的。

The helimagnet FeP is part of a family of binary pnictide materials with the MnP-type structure which share a nonsymmorphic crystal symmetry that preserves generic band structure characteristics through changes in elemental composition. It shows many similarities, including in its magnetic order, to isostructural CrAs and MnP, two compounds that are driven to superconductivity under applied pressure. Here we present a series of high magnetic field experiments on high quality single crystals of FeP, showing that the resistance not only increases without saturation by up to several hundred times its zero field value by 35 T, but that it also exhibits an anomalously linear field dependence over the entire field range when the field is aligned precisely along the crystallographic c-axis. A close comparison of quantum oscillation frequencies to electronic structure calculations links this orientation to a semi-Dirac point in the band structure which disperses linearly in a single direction in the plane perpendicular to field, a symmetry-protected feature of this entire material family. We show that the two striking features of MR-large amplitude and linear field dependence-arise separately in this system, with the latter likely due to a combination of ordered magnetism and topological band structure.

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