论文标题
观察稀土单核hosb中的状态张开状态
Observation of gapped state in rare-earth monopnictide HoSb
论文作者
论文摘要
稀有地球剂家族吸引了由于其异常极端磁性(XMR)特性驱动的强烈的当前兴趣,并且潜在的拓扑非平凡的表面状态的存在。对这种材料家族中非平凡地面状态的实验性观察并非普遍存在。在这里,使用高分辨率分辨的光发射光谱(ARPES),磁通转移和平行的第一原理建模,我们检查了HOSB中电子状态的性质。尽管我们发现布里鲁因区(BZ)的G和X对称点存在散装带隙,但我们没有发现这些差距显示出频带倒置,因此HOSB不容纳DIRAC半学状态。我们的磁转运测量表明,HOSB可以表征为相关的几乎完全完整的电子孔补偿半学。我们的分析表明,几乎完美的电子孔补偿可以推动HOSB中不饱和XMR效应的出现。
The rare-earth monopnictide family is attracting an intense current interest driven by its unusual extreme magnetoresistance (XMR) property and the potential presence of topologically non-trivial surface states. The experimental observation of non-trivial surface states in this family of materials are not ubiquitous. Here, using high-resolution angle-resolved photoemission spectroscopy (ARPES), magnetotransport, and parallel first-principles modeling, we examine the nature of electronic states in HoSb. Although we find the presence of bulk band gaps at the G and X-symmetry points of the Brillouin zone (BZ), we do not find these gaps to exhibit band inversion so that HoSb does not host a Dirac semimetal state. Our magnetotransport measurements indicate that HoSb can be characterized as a correlated nearly-complete electron-hole-compensated semimetal. Our analysis reveals that the nearly perfect electron-hole compensation could drive the appearance of non-saturating XMR effect in HoSb.