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外尔半金属中具有体带拓扑结构的外尔费米子准粒子和费米弧的独特演化

Distinct Evolutions of Weyl Fermion Quasiparticles and Fermi Arcs with Bulk Band Topology in Weyl Semimetals.

作者信息

Xu N, Autès G, Matt C E, Lv B Q, Yao M Y, Bisti F, Strocov V N, Gawryluk D, Pomjakushina E, Conder K, Plumb N C, Radovic M, Qian T, Yazyev O V, Mesot J, Ding H, Shi M

机构信息

Swiss Light Source, Paul Scherrer Institut, CH-5232 Villigen PSI, Switzerland.

Institute of Physics, École Polytechnique Fédérale de Lausanne (EPFL), CH-1015 Lausanne, Switzerland.

出版信息

Phys Rev Lett. 2017 Mar 10;118(10):106406. doi: 10.1103/PhysRevLett.118.106406.

DOI:10.1103/PhysRevLett.118.106406
PMID:28339253
Abstract

The Weyl semimetal phase is a recently discovered topological quantum state of matter characterized by the presence of topologically protected degeneracies near the Fermi level. These degeneracies are the source of exotic phenomena, including the realization of chiral Weyl fermions as quasiparticles in the bulk and the formation of Fermi arc states on the surfaces. Here, we demonstrate that these two key signatures show distinct evolutions with the bulk band topology by performing angle-resolved photoemission spectroscopy, supported by first-principles calculations, on transition-metal monophosphides. While Weyl fermion quasiparticles exist only when the chemical potential is located between two saddle points of the Weyl cone features, the Fermi arc states extend in a larger energy scale and are robust across the bulk Lifshitz transitions associated with the recombination of two nontrivial Fermi surfaces enclosing one Weyl point into a single trivial Fermi surface enclosing two Weyl points of opposite chirality. Therefore, in some systems (e.g., NbP), topological Fermi arc states are preserved even if Weyl fermion quasiparticles are absent in the bulk. Our findings not only provide insight into the relationship between the exotic physical phenomena and the intrinsic bulk band topology in Weyl semimetals, but also resolve the apparent puzzle of the different magnetotransport properties observed in TaAs, TaP, and NbP, where the Fermi arc states are similar.

摘要

外尔半金属相是一种最近发现的物质拓扑量子态,其特征是在费米能级附近存在拓扑保护的简并态。这些简并态是奇异现象的根源,包括在体相中实现手性外尔费米子作为准粒子以及在表面形成费米弧态。在这里,我们通过对过渡金属单磷化物进行角分辨光电子能谱实验,并辅以第一性原理计算,证明了这两个关键特征随体带拓扑结构呈现出不同的演化。虽然只有当化学势位于外尔锥特征的两个鞍点之间时才存在外尔费米子准粒子,但费米弧态在更大的能量尺度上延伸,并且在与两个包围一个外尔点的非平凡费米面合并为一个包围两个相反手性外尔点的平凡费米面相关的体里夫希茨跃迁中是稳健的。因此,在一些系统(例如NbP)中,即使体相中不存在外尔费米子准粒子,拓扑费米弧态也能得以保留。我们的发现不仅深入揭示了外尔半金属中奇异物理现象与内在体带拓扑结构之间的关系,还解决了在TaAs、TaP和NbP中观察到的不同磁输运性质这一明显难题,其中费米弧态是相似的。

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